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1 gezelter 3302 %% This BibTeX bibliography file was created using BibDesk.
2     %% http://bibdesk.sourceforge.net/
3 tim 2746
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5 gezelter 3305 %% Created for Dan Gezelter at 2008-01-09 17:08:39 -0500
6 gezelter 3302
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8     %% Saved with string encoding Western (ASCII)
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10    
11    
12 gezelter 3305 @article{PhysRev.119.53,
13     Author = {Favro, L. Dale},
14     Date-Added = {2008-01-09 16:57:02 -0500},
15     Date-Modified = {2008-01-09 16:57:02 -0500},
16     Doi = {10.1103/PhysRev.119.53},
17     Journal = {Phys. Rev.},
18     Month = {Jul},
19     Number = {1},
20     Numpages = {9},
21     Pages = {53--62},
22     Publisher = {American Physical Society},
23     Title = {Theory of the Rotational Brownian Motion of a Free Rigid Body},
24     Volume = {119},
25     Year = {1960}}
26    
27 gezelter 3302 @article{hess:209,
28     Author = {Berk Hess},
29     Date-Added = {2008-01-08 16:41:06 -0500},
30     Date-Modified = {2008-01-08 16:41:06 -0500},
31     Doi = {10.1063/1.1421362},
32     Journal = {The Journal of Chemical Physics},
33     Keywords = {viscosity; molecular dynamics method; liquid theory; shear flow},
34     Number = {1},
35     Pages = {209-217},
36     Publisher = {AIP},
37     Title = {Determining the shear viscosity of model liquids from molecular dynamics simulations},
38     Url = {http://link.aip.org/link/?JCP/116/209/1},
39     Volume = {116},
40     Year = {2002}}
41    
42     @article{Garcia-de-la-Torre:1997qy,
43     Abstract = {Single-valued hydrodynamic coefficients of a rigid particle can be calculated from existing theories and computer programs for either bead models or ellipsoids. Starting from these coefficients, we review the procedures for the calculation of complex solution properties depending on rotational diffusion, such as the decays of electric birefringence and fluorescence anisotropy. We also describe the calculation of the scattering from factor of bead models. The hydrodynamic coefficients and solution properties can be combined to give universal, shape-dependent functions, which were initially intended for ellipsoidal particles, and are extended here for the most general case. We have implemented all three developments in a new computer program. SOLPRO, for calculation of SOLution PROperties, which can be linked to existing software for bead models or ellipsoids.},
44     Address = {Departamento de Quimica Fisica Universidad de Murcia, Spain. jgt{\char64}fcu,um.es},
45     Au = {Garcia de la Torre, J and Carrasco, B and Harding, SE},
46     Author = {Garcia de la Torre, J and Carrasco, B and Harding, S E},
47     Da = {19970709},
48     Date-Added = {2008-01-08 15:45:31 -0500},
49     Date-Modified = {2008-01-08 15:46:57 -0500},
50     Dcom = {19970709},
51     Edat = {1997/01/01},
52     Issn = {0175-7571 (Print)},
53     Jid = {8409413},
54     Journal = {Eur Biophys J},
55     Jt = {European biophysics journal : EBJ},
56     Keywords = {Birefringence; Fluorescence Polarization; Humans; Immunoglobulin G/chemistry; Models, Structural; *Protein Conformation; Proteins/*chemistry; Scattering, Radiation; *Software; Ultracentrifugation/methods},
57     Language = {eng},
58     Lr = {20061115},
59     Mhda = {1997/01/01 00:01},
60     Number = {5-6},
61     Own = {NLM},
62     Pages = {361--372},
63     Pl = {GERMANY},
64     Pmid = {9213556},
65     Pst = {ppublish},
66     Pt = {Journal Article; Research Support, Non-U.S. Gov't},
67     Pubm = {Print},
68     Rn = {0 (Immunoglobulin G); 0 (Proteins)},
69     Sb = {IM},
70 gezelter 3305 So = {Eur Biophys J. 1997;25(5-6):361-72.},
71 gezelter 3302 Stat = {MEDLINE},
72     Title = {SOLPRO: theory and computer program for the prediction of SOLution PROperties of rigid macromolecules and bioparticles.},
73     Volume = {25},
74     Year = {1997}}
75    
76     @article{Ravichandran:1999fk,
77     Abstract = {Detailed molecular dynamics simulations of the rotational and the translational motions of Gay-Berne ellipsoids in a sea of Lennard-Jones spheres have been carried out. It is found that while the translational motion of an ellipsoid is isotropic at low density, it becomes increasingly anisotropic with density until the ratio of the parallel to the perpendicular diffusion coefficients becomes nearly equal to the value of the aspect ratio at high density. The latter is in agreement with the prediction of Navier-Stokes hydrodynamics with slip boundary condition. The product of the translational diffusion coefficient and the rotational correlation time also attains a hydrodynamic-like density independent behavior only at high density. The reorientational correlation function becomes nonexponential at high density and low temperature where it also develops a slow decay. The perpendicular component of the velocity time correlation function exhibits a clear double minimum, only at high density, which becomes more pronounced as the aspect ratio is increased. (C) 1999 American Institute of Physics. [S0021-9606(99)51440-2].},
78     Author = {Ravichandran, S and Bagchi, B},
79     Date-Added = {2008-01-08 15:24:48 -0500},
80     Date-Modified = {2008-01-08 15:25:41 -0500},
81     Journal = {Journal of Chemical Physics},
82     Pages = {7505-7511},
83     Title = {Anisotropic diffusion of nonspherical molecules in dense liquids: A molecular dynamics simulation of isolated ellipsoids in the sea of spheres},
84     Volume = {111},
85     Year = {1999}}
86    
87     @article{TANG:1993lr,
88     Abstract = {Translational friction coefficients of hard prolate ellipsoids (having aspect ratios of 1-10) have been calculated by solving the linearized Navier-Stokes equations of hydrodynamics, using the method of Faxen's theorem. When the stick boundary condition was used, the present results reproduce the famous work of Lamb. The new information derived from this study arises from the analysis of the friction under the influence of the slip hydrodynamic boundary condition. It was found that the slip friction perpendicular to the long axis of the prolate ellipsoid increases monotonically with aspect ratio, whereas the parallel component of the friction decreases monotonically to an apparent limiting value. The ratio f(perpendicular to)/f(parallel to) of friction coefficients perpendicular and parallel to the long axis of the particle, calculated using slip hydrodynamics, scales roughly as the aspect ratio of the ellipsoid, in accord with the findings from an Enskog (uncorrelated binary collision) kinetic theory of hard ellipsoids and from the estimate derived from molecular dynamics. In contrast, f(perpendicular to)/f(parallel to) derived by means of stick hydrodynamics shows a weak dependence on the aspect ratio and disagrees with kinetic theory and molecular dynamics findings.},
89     Author = {TANG, SA and EVANS, GT},
90     Date-Added = {2008-01-08 15:23:42 -0500},
91     Date-Modified = {2008-01-08 15:24:09 -0500},
92     Journal = {Molecular Physics},
93     Pages = {1443-1457},
94     Title = {A CRITIQUE OF SLIP AND STICK HYDRODYNAMICS FOR ELLIPSOIDAL BODIES},
95     Volume = {80},
96     Year = {1993}}
97    
98     @article{Schmidt:2003kx,
99     Abstract = {Using molecular dynamics computer simulation, we have calculated the velocity autocorrelation function and diffusion constant for a spherical solute in a dense fluid of spherical solvent particles. The size and mass of the solute particle are related in such a way that we can naturally approach the Brownian limit (when the solute becomes much larger and more massive than the solvent particles). We find that as long as the solute radius is interpreted as an effective hydrodynamic radius, the Stokes-Einstein law with slip boundary conditions is satisfied as the Brownian limit is approached (specifically, when the solute is roughly 100 times more massive than the solvent particles). In contrast, the Stokes-Einstein law is not satisfied for a tagged particle of the neat solvent. We also find that in the Brownian limit the amplitude of the long-time tail of the solute's velocity autocorrelation function is in good agreement with theoretical hydrodynamic predictions. When the solvent density is substantially lower than the triple density, the Stokes-Einstein law is no longer satisfied, and the amplitude of the long-time tail is not in good agreement with theoretical predictions, signaling the breakdown of hydrodynamics. (C) 2003 American Institute of Physics.},
100     Author = {Schmidt, JR and Skinner, JL},
101     Date-Added = {2008-01-08 15:12:53 -0500},
102     Date-Modified = {2008-01-08 15:13:21 -0500},
103     Doi = {DOI 10.1063/1.1610442},
104     Journal = {Journal of Chemical Physics},
105     Pages = {8062-8068},
106     Title = {Hydrodynamic boundary conditions, the Stokes-Einstein law, and long-time tails in the Brownian limit},
107     Volume = {119},
108     Year = {2003}}
109    
110     @article{Schmidt:2004fj,
111     Abstract = {Using molecular dynamics computer simulation, we have calculated the velocity autocorrelation function and diffusion constant for a variety of solutes in a dense fluid of spherical solvent particles. We explore the effects of surface roughness of the solute on the resulting hydrodynamic boundary condition as we naturally approach the Brownian limit (when the solute becomes much larger and more massive than the solvent particles). We find that when the solute and solvent interact through a purely repulsive isotropic potential, in the Brownian limit the Stokes-Einstein law is satisfied with slip boundary conditions. However, when surface roughness is introduced through an anisotropic solute-solvent interaction potential, we find that the Stokes-Einstein law is satisfied with stick boundary conditions. In addition, when the attractive strength of a short-range isotropic solute-solvent potential is increased, the solute becomes dressed with solvent particles, making it effectively rough, and so stick boundary conditions are again recovered.},
112     Author = {Schmidt, JR and Skinner, JL},
113     Date-Added = {2008-01-08 15:12:53 -0500},
114     Date-Modified = {2008-01-08 15:13:20 -0500},
115     Doi = {DOI 10.1021/jp037185r},
116     Journal = {Journal of Physical Chemistry B},
117     Pages = {6767-6771},
118     Title = {Brownian motion of a rough sphere and the Stokes-Einstein Law},
119     Volume = {108},
120     Year = {2004}}
121    
122     @article{Klein01,
123     Author = {J.~C. Shelley andf M.~Y. Shelley and R.~C. Reeder and S. Bandyopadhyay and M.~L. Klein},
124     Date-Added = {2008-01-08 14:58:56 -0500},
125     Date-Modified = {2008-01-08 14:58:56 -0500},
126     Journal = {J. Phys. Chem. B},
127     Pages = {4464-4470},
128     Title = {A Coarse Grain Model for Phospholipid Simulations},
129     Volume = 105,
130     Year = 2001}
131    
132     @article{Berardi98,
133     Author = {R. Berardi and C. Fava and C. Zannoni},
134     Date-Added = {2008-01-08 14:58:56 -0500},
135     Date-Modified = {2008-01-08 14:58:56 -0500},
136     Journal = cpl,
137     Pages = {8-14},
138     Title = {A Gay-Berne potential for dissimilar biaxial particles},
139     Volume = 297,
140     Year = 1998}
141    
142     @article{Hura00,
143     Author = {G. Hura and J.~M. Sorenson and R.~M. Glaeser and T. Head-Gordon},
144     Date-Added = {2008-01-08 14:58:56 -0500},
145     Date-Modified = {2008-01-08 14:58:56 -0500},
146     Journal = {J. Chem. Phys.},
147     Pages = {9140-9148},
148     Title = {A high-quality x-ray scattering experiment on liquid water at ambient conditions},
149     Volume = 113,
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151    
152     @article{Peker93,
153     Author = {A. Peker and W.~L. Johnson},
154     Date-Added = {2008-01-08 14:58:56 -0500},
155     Date-Modified = {2008-01-08 14:58:56 -0500},
156     Journal = {Appl. Phys. Lett.},
157     Pages = {2342-2344},
158     Title = {A highly processable metallic-glass - $\mbox{Zr}_{41.2}\mbox{Ti}_{13.8}\mbox{Cu}_{12.5}\mbox{Ni}_{10.0}\mbox{Be}_{22.5}$},
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162     @article{Raphael2000,
163     Author = {Robert M. Raphael and Aleksander S. Popel and William E. Brownell},
164     Date-Added = {2008-01-08 14:58:56 -0500},
165     Date-Modified = {2008-01-08 14:58:56 -0500},
166     Journal = bj,
167     Pages = {2844-2862},
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171    
172     @article{Heimburg00,
173     Author = {Thomas Heimburg},
174     Date-Added = {2008-01-08 14:58:56 -0500},
175     Date-Modified = {2008-01-08 14:58:56 -0500},
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182     @article{Tieleman98,
183     Author = {D.~P. Tieleman and H.~J.~C. Berendsen},
184     Date-Added = {2008-01-08 14:58:56 -0500},
185     Date-Modified = {2008-01-08 14:58:56 -0500},
186     Journal = {Biophys. J.},
187     Pages = {2786-2801},
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191    
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194     Date-Added = {2008-01-08 14:58:56 -0500},
195     Date-Modified = {2008-01-08 14:58:56 -0500},
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205     Date-Added = {2008-01-08 14:58:56 -0500},
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215     Date-Added = {2008-01-08 14:58:56 -0500},
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225     Date-Added = {2008-01-08 14:58:56 -0500},
226     Date-Modified = {2008-01-08 14:58:56 -0500},
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235     Date-Added = {2008-01-08 14:58:56 -0500},
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245     Date-Added = {2008-01-08 14:58:56 -0500},
246     Date-Modified = {2008-01-08 14:58:56 -0500},
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256     Date-Added = {2008-01-08 14:58:56 -0500},
257     Date-Modified = {2008-01-08 14:58:56 -0500},
258     Journal = {J. Chem. Phys.},
259     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/Essmann_SmoothPME_95.pdf},
260     Number = {19},
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262     Title = {A smooth particle mesh Ewald method},
263     Volume = {103},
264     Year = {1995}}
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268     Date-Added = {2008-01-08 14:58:56 -0500},
269     Date-Modified = {2008-01-08 14:58:56 -0500},
270     Journal = jcp,
271     Pages = 9164,
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278     Date-Added = {2008-01-08 14:58:56 -0500},
279     Date-Modified = {2008-01-08 14:58:56 -0500},
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288     Date-Added = {2008-01-08 14:58:56 -0500},
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296     @article{Shlesinger99,
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298     Date-Added = {2008-01-08 14:58:56 -0500},
299     Date-Modified = {2008-01-08 14:58:56 -0500},
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308     Date-Added = {2008-01-08 14:58:56 -0500},
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315     Year = {1989}}
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319     Date-Added = {2008-01-08 14:58:56 -0500},
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322     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/Petersen_AccuracyofPME_95.pdf},
323     Month = {September},
324     Number = {9},
325     Pages = {3668-3679},
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328     Year = {1995}}
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332     Date-Added = {2008-01-08 14:58:56 -0500},
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342     Date-Added = {2008-01-08 14:58:56 -0500},
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361     Date-Added = {2008-01-08 14:58:56 -0500},
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372     Date-Added = {2008-01-08 14:58:56 -0500},
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383     Date-Added = {2008-01-08 14:58:56 -0500},
384     Date-Modified = {2008-01-08 14:58:57 -0500},
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395     Date-Added = {2008-01-08 14:58:56 -0500},
396     Date-Modified = {2008-01-08 14:58:57 -0500},
397     Editor = {G.~R. Luckhurst and C.~A. Veracini},
398     Pages = {139-169},
399     Publisher = {Kluwer Academic Publishers},
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401     Year = 1994}
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405     Date-Added = {2008-01-08 14:58:56 -0500},
406     Date-Modified = {2008-01-08 14:58:57 -0500},
407     Journal = pccp,
408     Pages = {2114-2121},
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415     Date-Added = {2008-01-08 14:58:56 -0500},
416     Date-Modified = {2008-01-08 14:58:57 -0500},
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426     Date-Added = {2008-01-08 14:58:56 -0500},
427     Date-Modified = {2008-01-08 14:58:57 -0500},
428     Edition = {6th},
429     Publisher = {Saunders College Publishing},
430     Title = {Analytical Mechanics},
431     Year = 1999}
432    
433     @article{Mason01,
434     Author = {P. C. Mason and J. F. Nagle and R. M. Epand and J. Katsaras},
435     Date-Added = {2008-01-08 14:58:56 -0500},
436     Date-Modified = {2008-01-08 14:58:57 -0500},
437     Journal = pre,
438     Number = 030902,
439     Pages = {1-4},
440     Title = {Anomalous Swelling in Phospholipid bilayers is not coupled to the formation of a ripple phase},
441     Volume = 63,
442     Year = 2001}
443    
444     @article{Forester97,
445     Author = {T.~R. Forester and W. Smith and J.~H.~R. Clarke},
446     Date-Added = {2008-01-08 14:58:56 -0500},
447     Date-Modified = {2008-01-08 14:58:57 -0500},
448     Journal = {J. Chem. Soc. - Faraday Transactions},
449     Pages = {613-619},
450     Title = {Antibiotic activity of valinomycin - Molecular dynamics simulations involving the water/membrane interface},
451     Volume = 93,
452     Year = 1997}
453    
454     @article{Lu97,
455     Author = {J. Lu and J.~A. Szpunar},
456     Date-Added = {2008-01-08 14:58:56 -0500},
457     Date-Modified = {2008-01-08 14:58:57 -0500},
458     Journal = {Phil. Mag. A},
459     Pages = {1057-1066},
460     Title = {Applications of the embedded-atom method to glass formation and crystallization of liquid and glass transition-metal nickel},
461     Volume = {75},
462     Year = {1997}}
463    
464     @inproceedings{Gotze89,
465     Address = {Amsterdam},
466     Author = {W. G{\"{o}}tze},
467     Booktitle = {Liquids, Freezing and Glass Transitions},
468     Date-Added = {2008-01-08 14:58:56 -0500},
469     Date-Modified = {2008-01-08 14:58:57 -0500},
470     Editor = {J.~P. Hansen and D. Levesque and J. Zinn-Justin},
471     Pages = {287-503},
472     Publisher = {North-Holland},
473     Title = {Aspects of Structural Glass Transitions},
474     Volume = {I},
475     Year = 1989}
476    
477     @article{Lewis91,
478     Author = {L.~J. Lewis},
479     Date-Added = {2008-01-08 14:58:56 -0500},
480     Date-Modified = {2008-01-08 14:58:57 -0500},
481     Journal = prb,
482     Pages = {4245-4254},
483     Title = {Atomic dynamics through the glass transition},
484     Volume = 44,
485     Year = 1991}
486    
487     @article{Tartaglino02,
488     Author = {U. Tartaglino and E. Tosatti and D. Passerone and F. Ercolessi},
489     Date-Added = {2008-01-08 14:58:56 -0500},
490     Date-Modified = {2008-01-08 14:58:57 -0500},
491     Journal = prb,
492     Pages = 241406,
493     Title = {Bending strain-driven modification of surface resconstructions: Au(111)},
494     Volume = 65,
495     Year = 2002}
496    
497     @article{Klafter96,
498     Author = {J. Klafter and M. Shlesinger and G. Zumofen},
499     Date-Added = {2008-01-08 14:58:56 -0500},
500     Date-Modified = {2008-01-08 14:58:57 -0500},
501     Journal = {Physics Today},
502     Pages = {33-39},
503     Title = {Beyond Brownian Motion},
504     Volume = 49,
505     Year = 1996}
506    
507     @article{Roberts95,
508     Author = {J.~E. Roberts and J. Schnitker},
509     Date-Added = {2008-01-08 14:58:56 -0500},
510     Date-Modified = {2008-01-08 14:58:57 -0500},
511     Journal = {J. Phys. Chem.},
512     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/Roberts_BoundryConditionsIonWater_95.pdf},
513     Pages = {1322-1331},
514     Title = {Boundary Conditions in Sumulations of Aqueous Ionic Solutions: A Systematic Study},
515     Volume = {99},
516     Year = {1995}}
517    
518     @article{Ayton02,
519     Author = {G. Ayton and G.~A. Voth},
520     Date-Added = {2008-01-08 14:58:56 -0500},
521     Date-Modified = {2008-01-08 14:58:57 -0500},
522     Journal = {Biophys. J.},
523     Pages = {3357-3370},
524     Title = {Bridging Microscopic and Mesoscopic Simulations of Lipid Bilayers},
525     Volume = 83,
526     Year = 2002}
527    
528     @article{ChoiYim97,
529     Author = {H. Choi-Yim and W.~L. Johnson},
530     Date-Added = {2008-01-08 14:58:56 -0500},
531     Date-Modified = {2008-01-08 14:58:57 -0500},
532     Journal = {Appl. Phys. Lett.},
533     Pages = {3808-3810},
534     Title = {Bulk metallic glass matrix composites},
535     Volume = 71,
536     Year = 1997}
537    
538     @article{Rabani97,
539     Author = {E. Rabani and J.~D. Gezelter and B.~J. Berne},
540     Date-Added = {2008-01-08 14:58:56 -0500},
541     Date-Modified = {2008-01-08 14:58:57 -0500},
542     Journal = {J. Chem. Phys.},
543     Pages = {6867-6876},
544     Title = {Calculating the hopping rate for self-diffusion on rough potential energy surfaces: Cage correlations},
545     Volume = 107,
546     Year = 1997}
547    
548     @article{Gezelter97,
549     Author = {J.~D. Gezelter and E. Rabani and B.~J. Berne},
550     Date-Added = {2008-01-08 14:58:56 -0500},
551     Date-Modified = {2008-01-08 14:58:57 -0500},
552     Journal = jcp,
553     Pages = 4618,
554     Title = {Can imaginary instantaneous normal mode frequencies predict barriers to self-diffusion?},
555     Volume = 107,
556     Year = 1997}
557    
558     @article{Hoover85,
559     Author = {W.~G. Hoover},
560     Date-Added = {2008-01-08 14:58:56 -0500},
561     Date-Modified = {2008-01-08 14:58:57 -0500},
562     Journal = pra,
563     Pages = 1695,
564     Title = {Canonical dynamics: Equilibrium phase-space distributions},
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568     @article{Wigner55,
569     Author = {E.~P. Wigner},
570     Date-Added = {2008-01-08 14:58:56 -0500},
571     Date-Modified = {2008-01-08 14:58:57 -0500},
572     Journal = {Annals of Mathematics},
573     Pages = {548-564},
574     Title = {Characteristic Vectors of Bordered Matrices with Infinite Dimensions},
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576     Year = 1955}
577    
578     @article{Katsaras00,
579     Author = {J. Katsaras and S. Tristram-Nagle and Y. Liu and R. L. Headrick and E.Fontes and P. C. Mason and J. F. Nagle},
580     Date-Added = {2008-01-08 14:58:56 -0500},
581     Date-Modified = {2008-01-08 14:58:57 -0500},
582     Journal = pre,
583     Number = 5,
584     Pages = {5668-5677},
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586     Volume = 61,
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588    
589     @article{NorbertKucerka06012006,
590     Abstract = {X-ray data are presented for the benchmark dipalmitoylphosphatidylcholine lipid bilayer in the most biologically relevant state in which the bilayers are fully hydrated and in the fluid (liquid-crystalline) phase. Form factors F(qz) are obtained from a combination of two sample preparations, oriented stacks of bilayers for qz extending to 0.85 A-1 and unilamellar vesicles for smaller qz. Modeling obtains the electron density profile and values for the area per molecule, for the locations of the component groups, and for the different types of thicknesses of the bilayer, such as the hydrocarbon thickness and the steric thickness.
591     },
592     Author = {Kucerka, Norbert and Tristram-Nagle, Stephanie and Nagle, John F.},
593     Date-Added = {2008-01-08 14:58:56 -0500},
594     Date-Modified = {2008-01-08 14:58:57 -0500},
595     Doi = {10.1529/biophysj.106.086017},
596     Eprint = {http://www.biophysj.org/cgi/reprint/90/11/L83.pdf},
597     Journal = {Biophys. J.},
598     Number = {11},
599     Pages = {L83-85},
600     Title = {{Closer Look at Structure of Fully Hydrated Fluid Phase DPPC Bilayers}},
601     Url = {http://www.biophysj.org/cgi/content/abstract/90/11/L83},
602     Volume = {90},
603     Year = {2006}}
604    
605     @article{deJoannis06,
606     Author = {J. de~Joannis and F.~Y. Jiang and J.~T. Kindt},
607     Date-Added = {2008-01-08 14:58:56 -0500},
608     Date-Modified = {2008-01-08 14:58:57 -0500},
609     Journal = {Langmuir},
610     Pages = {998-1005},
611     Title = {Coarse-Grained Model Simulations of Mixed-Lipid Systems: Composition and Line Tension of a Stabilized Bilayer Edge},
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613     Year = 2006}
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615     @article{Keyes98,
616     Author = {T. Keyes and W.-X. Li and U.~Z{\"{u}}rcher},
617     Date-Added = {2008-01-08 14:58:56 -0500},
618     Date-Modified = {2008-01-08 14:58:57 -0500},
619     Journal = jcp,
620     Pages = {4693-4694},
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624    
625     @article{Jorgensen83,
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627     Date-Added = {2008-01-08 14:58:56 -0500},
628     Date-Modified = {2008-01-08 14:58:57 -0500},
629     Journal = jcp,
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633     Year = 1983}
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635     @book{Warshel91,
636     Address = {New York},
637     Author = {Arieh Warshel},
638     Date-Added = {2008-01-08 14:58:56 -0500},
639     Date-Modified = {2008-01-08 14:58:57 -0500},
640     Publisher = {Wiley},
641     Title = {Computer modeling of chemical reactions in enzymes and solutions},
642     Year = 1991}
643    
644     @article{Kushick76,
645     Author = {J. Kushick and B.~J. Berne},
646     Date-Added = {2008-01-08 14:58:56 -0500},
647     Date-Modified = {2008-01-08 14:58:57 -0500},
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650     Title = {Computer Simulation of anisotropic molecular fluids},
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652     Year = 1976}
653    
654     @article{Luckhurst90,
655     Author = {G.~R. Luckhurst and R.~A. Stephens and R.~W. Phippen},
656     Date-Added = {2008-01-08 14:58:56 -0500},
657     Date-Modified = {2008-01-08 14:58:57 -0500},
658     Journal = {Liquid Crystals},
659     Pages = {451-464},
660     Title = {Computer simulation studies of anisotropic systems {XIX}. Mesophases formed by the Gay-Berne model mesogen},
661     Volume = 8,
662     Year = 1990}
663    
664     @article{Kubica02,
665     Author = {Krystian Kubica},
666     Date-Added = {2008-01-08 14:58:56 -0500},
667     Date-Modified = {2008-01-08 14:58:57 -0500},
668     Journal = {Computers and Chemistry},
669     Pages = {351-356},
670     Title = {Computer Simulation studies on significance of Lipid Polar Head Oreintation},
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673    
674     @article{Seifert97,
675     Author = {Udo Seifert},
676     Date-Added = {2008-01-08 14:58:56 -0500},
677     Date-Modified = {2008-01-08 14:58:57 -0500},
678     Journal = {Adv. Phys.},
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686     Author = {L. Angelani and G. Parisi and G. Ruocco and G. Viliani},
687     Date-Added = {2008-01-08 14:58:56 -0500},
688     Date-Modified = {2008-01-08 14:58:57 -0500},
689     Journal = prl,
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694     Year = 1998}
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696     @article{Duwez60,
697     Author = {P. Duwez and R.~H. Willens and W. {Klement~Jr.}},
698     Date-Added = {2008-01-08 14:58:56 -0500},
699     Date-Modified = {2008-01-08 14:58:57 -0500},
700     Journal = {J. Appl. Phys.},
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706     @article{Zhu2005,
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708     Date-Added = {2008-01-08 14:58:56 -0500},
709     Date-Modified = {2008-01-08 14:58:57 -0500},
710     Journal = prb,
711     Pages = 104102,
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716     @article{Zhu2006,
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718     Date-Added = {2008-01-08 14:58:56 -0500},
719     Date-Modified = {2008-01-08 14:58:58 -0500},
720     Journal = prb,
721     Pages = 064115,
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724     Year = 2006}
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726     @article{Kolafa92,
727     Author = {J. Kolafa and J.~W. Perram},
728     Date-Added = {2008-01-08 14:58:56 -0500},
729     Date-Modified = {2008-01-08 14:58:58 -0500},
730     Journal = {Mol. Simul.},
731     Pages = {351-368},
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734     Year = {1992}}
735    
736     @article{Tlusty00,
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738     Date-Added = {2008-01-08 14:58:56 -0500},
739     Date-Modified = {2008-01-08 14:58:58 -0500},
740     Journal = {Science},
741     Pages = {1328-1331},
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744     Year = 2000}
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746     @article{Seung1988,
747     Author = {Seung, H. S. and Nelson, David R.},
748     Date-Added = {2008-01-08 14:58:56 -0500},
749     Date-Modified = {2008-01-08 14:58:58 -0500},
750     Doi = {10.1103/PhysRevA.38.1005},
751     Journal = {Phys. Rev. A},
752     Month = {Jul},
753     Number = {2},
754     Numpages = {13},
755     Pages = {1005--1018},
756     Publisher = {American Physical Society},
757     Title = {Defects in flexible membranes with crystalline order},
758     Volume = {38},
759     Year = {1988}}
760    
761     @article{Monroe95,
762     Author = {C. Monroe and D.~M. Meekhof and B.~E. King and W.~M. Itano and D.~J. Wineland},
763     Date-Added = {2008-01-08 14:58:56 -0500},
764     Date-Modified = {2008-01-08 14:58:58 -0500},
765     Journal = prl,
766     Pages = 4714,
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771     @article{Parkhurst75a,
772     Author = {H.~J. {Parkhurst, Jr.} and J. Jonas},
773     Date-Added = {2008-01-08 14:58:56 -0500},
774     Date-Modified = {2008-01-08 14:58:58 -0500},
775     Journal = jcp,
776     Number = 6,
777     Pages = {2698-2704},
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780     Year = 1975}
781    
782     @article{Parkhurst75b,
783     Author = {H.~J. {Parkhurst, Jr.} and J. Jonas},
784     Date-Added = {2008-01-08 14:58:56 -0500},
785     Date-Modified = {2008-01-08 14:58:58 -0500},
786     Journal = jcp,
787     Number = 6,
788     Pages = {2705-2709},
789     Title = {Dense liquids. II. The effect of density and temperature on viscosity of tetramethylsilane and benzene},
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792    
793     @article{Rodgers88,
794     Author = {G.~J. Rodgers and A. Bray},
795     Date-Added = {2008-01-08 14:58:56 -0500},
796     Date-Modified = {2008-01-08 14:58:58 -0500},
797     Journal = {Phys. Rev. B},
798     Pages = 355703562,
799     Title = {Density of States of a Sparse Random Matrix},
800     Volume = 37,
801     Year = 1988}
802    
803     @article{Rodgers90,
804     Author = {G.~J. Rodgers and C. {De Dominicis}},
805     Date-Added = {2008-01-08 14:58:56 -0500},
806     Date-Modified = {2008-01-08 14:58:58 -0500},
807     Journal = {J. Phys. A: Math. Gen.},
808     Pages = {1567-1573},
809     Title = {Density of states of sparse random matrices},
810     Volume = 23,
811     Year = 1990}
812    
813     @article{Ewald21,
814     Author = {P.~P. Ewald},
815     Date-Added = {2008-01-08 14:58:56 -0500},
816     Date-Modified = {2008-01-08 14:58:58 -0500},
817     Journal = {Ann. Physik},
818     Pages = {253-287},
819     Title = {Die Berechnung optischer und elektrostatischer Gitterpotential},
820     Volume = {64},
821     Year = {1921}}
822    
823     @article{Zwanzig88,
824     Author = {R. Zwanzig},
825     Date-Added = {2008-01-08 14:58:56 -0500},
826     Date-Modified = {2008-01-08 14:58:58 -0500},
827     Journal = {Proc. Natl. Acad. Sci. USA},
828     Pages = 2029,
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831     Year = 1988}
832    
833     @article{Madan90,
834     Author = {B. Madan and T. Keyes and G. Seeley},
835     Date-Added = {2008-01-08 14:58:56 -0500},
836     Date-Modified = {2008-01-08 14:58:58 -0500},
837     Journal = jcp,
838     Pages = {7565-7569},
839     Title = {Diffusion in supercooled liquids via normal mode analysis},
840     Volume = 92,
841     Year = 1990}
842    
843     @article{Gaukel98,
844     Author = {C. Gaukel and H.~R. Schober},
845     Date-Added = {2008-01-08 14:58:56 -0500},
846     Date-Modified = {2008-01-08 14:58:58 -0500},
847     Journal = {Solid State Comm.},
848     Pages = {1-5},
849     Title = {Diffusion Mechanisms in under-cooled Binary Metal Liquids of $\mbox{Zr}_{67}\mbox{Cu}_{33}$},
850     Volume = 107,
851     Year = 1998}
852    
853     @article{Semmler98,
854     Author = {M. Semmler and E.~K. Mann and J. Ricka and M. Borkovec},
855     Date-Added = {2008-01-08 14:58:56 -0500},
856     Date-Modified = {2008-01-08 14:58:58 -0500},
857     Journal = {Langmuir},
858     Pages = {5127-5132},
859     Title = {Diffusional Deposition of Charged Latex Particles on Water-Solid Interfaces at Low Ionic Strength},
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861     Year = 1998}
862    
863     @article{Rabani99,
864     Author = {E. Rabani and J.~D. Gezelter and B.~J. Berne},
865     Date-Added = {2008-01-08 14:58:56 -0500},
866     Date-Modified = {2008-01-08 14:58:58 -0500},
867     Journal = prl,
868     Pages = {3649},
869     Title = {Direct Observation of Stretched-Exponential Relaxation in Low-Temperature Lennard-Jones Systems Using the Cage Correlation Function},
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871     Year = {1999}}
872    
873     @article{Ngai81,
874     Author = {K.~L. Ngai and F.-S. Liu},
875     Date-Added = {2008-01-08 14:58:56 -0500},
876     Date-Modified = {2008-01-08 14:58:58 -0500},
877     Journal = prb,
878     Pages = {1049-1065},
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881     Year = 1981}
882    
883     @book{Berne90,
884     Address = {Malabar, Florida},
885     Author = {B.~J. Berne and R. Pecora},
886     Date-Added = {2008-01-08 14:58:56 -0500},
887     Date-Modified = {2008-01-08 14:58:58 -0500},
888     Publisher = {Robert E. Krieger Publishing Company, Inc.},
889     Title = {Dynamic Light Scattering},
890     Year = 1990}
891    
892     @article{Essmann99,
893     Author = {U. Essmann and M.~L. Berkowitz},
894     Date-Added = {2008-01-08 14:58:56 -0500},
895     Date-Modified = {2008-01-08 14:58:58 -0500},
896     Journal = {Biophys. J.},
897     Pages = {2081-2089},
898     Title = {Dynamical properties of phospholipid bilayers from computer simulation},
899     Volume = 76,
900     Year = 1999}
901    
902     @article{Stillinger83,
903     Author = {F.~H. Stillinger and T.~A. Weber},
904     Date-Added = {2008-01-08 14:58:56 -0500},
905     Date-Modified = {2008-01-08 14:58:58 -0500},
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907     Number = 4,
908     Pages = {2408-2416},
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910     Volume = 28,
911     Year = 1983}
912    
913     @article{Hunenberger99b,
914     Author = {P.~H. H\"{u}nenberger and J.~A. McCammon},
915     Date-Added = {2008-01-08 14:58:56 -0500},
916     Date-Modified = {2008-01-08 14:58:58 -0500},
917     Journal = {Biophys. Chem.},
918     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/McCammon_ArtificialEwaldPeriodicity_99.pdf},
919     Pages = {69-88},
920     Title = {Effect of artificial periodicity in simulations of biomolecules under Ewald boundary conditions: a continuum electrostatics study},
921     Volume = {78},
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925     Author = {E. Spohr},
926     Date-Added = {2008-01-08 14:58:56 -0500},
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928     Journal = {J. Chem. Phys.},
929     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/Spohr_2DElectrostatics_97.pdf},
930     Number = {16},
931     Pages = {6342-6348},
932     Title = {Effect of electrostatic boundary conditions and system size on the interfacial properties of water and aqueous solutions},
933     Volume = {107},
934     Year = {1997}}
935    
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937     Author = {S.~J. Marrink and A.~E. Mark},
938     Date-Added = {2008-01-08 14:58:56 -0500},
939     Date-Modified = {2008-01-08 14:58:58 -0500},
940     Journal = {Journal of Physical Chemistry B},
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951     Pages = {2123-2134},
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978     Date-Added = {2008-01-08 14:58:56 -0500},
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997     Date-Added = {2008-01-08 14:58:56 -0500},
998     Date-Modified = {2008-01-08 14:58:58 -0500},
999     Journal = jcp,
1000     Pages = {457-466},
1001     Title = {Electronic dephasing and electron-phonon coupling of aluminum phthalocyanine tetrasulphonate in hyperquenched and annealed glassy films of ethanol and methanol over a broad temperature range},
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1041     Keywords = {Empty Keywords},
1042     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/Heyes_CoulombChargeSpreading_81.pdf},
1043     Number = {3},
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1063     Journal = {Curr. Opin. Struct. Biol.},
1064     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Tobias_ElectrostaticsCalculations_01.pdf},
1065     Pages = {253-261},
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1072     Date-Added = {2008-01-08 14:58:56 -0500},
1073     Date-Modified = {2008-01-08 14:58:58 -0500},
1074     Doi = {10.1063/1.149195},
1075     Journal = {J. Chem. Phys.},
1076     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/Arnold_SlabElectrostatics_02.pdf},
1077     Number = {6},
1078     Pages = {2496-2502},
1079     Title = {Electrostatics in periodic slab geometries. I},
1080     Volume = {117},
1081     Year = {2002}}
1082    
1083     @article{deJoannis02,
1084     Author = {J. {de Joannis} and A. Arnold and C. Holm},
1085     Date-Added = {2008-01-08 14:58:56 -0500},
1086     Date-Modified = {2008-01-08 14:58:58 -0500},
1087     Doi = {10.1063/1.149195},
1088     Journal = {J. Chem. Phys.},
1089     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/Joannis_SlabElectrostatics_02.pdf},
1090     Number = {6},
1091     Pages = {2503-2512},
1092     Title = {Electrostatics in periodic slab geometries. II},
1093     Volume = {117},
1094     Year = {2002}}
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1098     Date-Added = {2008-01-08 14:58:56 -0500},
1099     Date-Modified = {2008-01-08 14:58:58 -0500},
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1108     Date-Added = {2008-01-08 14:58:56 -0500},
1109     Date-Modified = {2008-01-08 14:58:58 -0500},
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1133     Pages = 7983,
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1141     Date-Modified = {2008-01-08 14:58:58 -0500},
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1144     Number = {41},
1145     Pages = {10725-10732},
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1196     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/Hunenberger_IonSolutionEwaldArtifacts_99.pdf},
1197     Number = {4},
1198     Pages = {1856-1872},
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1201     Year = {1999}}
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1206     Date-Modified = {2008-01-08 14:58:59 -0500},
1207     Journal = {Phys. Rev. B},
1208     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/Rhee_finiteDimensionEwald_88.pdf},
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1210     Pages = {36-42},
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1213     Year = {1989}}
1214    
1215     @article{Yeh99,
1216     Author = {I.-C. Yeh and M.~L. Berkowitz},
1217     Date-Added = {2008-01-08 14:58:56 -0500},
1218     Date-Modified = {2008-01-08 14:58:59 -0500},
1219     Journal = {J. Chem. Phys.},
1220     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/Yeh_SlabCorrectionEwald_99.pdf},
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1222     Pages = {3155-3162},
1223     Title = {Ewald summation for systems with slab geometry},
1224     Volume = {111},
1225     Year = {1999}}
1226    
1227     @article{Brodka04,
1228     Author = {A. Br\'{o}dka},
1229     Date-Added = {2008-01-08 14:58:56 -0500},
1230     Date-Modified = {2008-01-08 14:58:59 -0500},
1231     Doi = {10.1016/j.cplett.2004.10.086},
1232     Journal = {Chem. Phys. Lett.},
1233     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/Brodka_PointDipoleSlabEwald_04.pdf},
1234     Pages = {62-67},
1235     Title = {Ewald summation method with electrostatic layer correction for interactions of point dipoles in slab geometry},
1236     Volume = {400},
1237     Year = {2004}}
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1241     Date-Added = {2008-01-08 14:58:56 -0500},
1242     Date-Modified = {2008-01-08 14:58:59 -0500},
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1251     Date-Added = {2008-01-08 14:58:56 -0500},
1252     Date-Modified = {2008-01-08 14:58:59 -0500},
1253     Journal = {Physica A},
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1262     Date-Modified = {2008-01-08 14:58:59 -0500},
1263     Journal = {Physica A},
1264     Pages = {89-100},
1265     Title = {Exploring the ripple phase of biomembranes},
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1272     Date-Modified = {2008-01-08 14:58:59 -0500},
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1292     Date-Added = {2008-01-08 14:58:56 -0500},
1293     Date-Modified = {2008-01-08 14:58:59 -0500},
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1296     Pages = {562-570},
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1301     @article{Benninger:2005qy,
1302     Abstract = {The plasma membrane of cells is an ordered environment, giving rise to anisotropic orientation and restricted motion of molecules and proteins residing in the membrane. At the same time as being an organized matrix of defined structure, the cell membrane is heterogeneous and dynamic. Here we present a method where we use fluorescence imaging of linear dichroism to measure the orientation of molecules relative to the cell membrane. By detecting linear dichroism as well as fluorescence anisotropy, the orientation parameters are separated from dynamic properties such as rotational diffusion and homo energy transfer (energy migration). The sensitivity of the technique is enhanced by using two-photon excitation for higher photo-selection compared to single photon excitation. We show here that we can accurately image lipid organization in whole cell membranes and in delicate structures such as membrane nanotubes connecting two cells. The speed of our wide-field imaging system makes it possible to image changes in orientation and anisotropy occurring on a subsecond timescale. This is demonstrated by time-lapse studies showing that cholesterol depletion rapidly disrupts the orientation of a fluorophore located within the hydrophobic region of the cell membrane but not of a surface bound probe. This is consistent with cholesterol having an important role in stabilizing and ordering the lipid tails within the plasma membrane. },
1303     Annote = {10.1529/biophysj.104.050096},
1304     Author = {Benninger, Richard K. P. and Onfelt, Bjorn and Neil, Mark A. A. and Davis, Daniel M. and French, Paul M. W.},
1305     Date-Added = {2008-01-08 14:58:56 -0500},
1306     Date-Modified = {2008-01-08 14:58:59 -0500},
1307     Journal = {Biophysical Journal},
1308     Journal1 = {Biophys. J.},
1309     Number = {1},
1310     Pages = {609--622},
1311     Title = {Fluorescence Imaging of Two-Photon Linear Dichroism: Cholesterol Depletion Disrupts Molecular Orientation in Cell Membranes},
1312     Ty = {JOUR},
1313     Url = {http://www.biophysj.org/cgi/content/abstract/88/1/609},
1314     Volume = {88},
1315     Year = {2005}}
1316    
1317     @inbook{Blumen86,
1318     Address = {Amsterdam},
1319     Author = {A. Blumen and J. Klafter and G. Zumofen},
1320     Chapter = {Reactions in Disordered Media Modelled by Fractals},
1321     Date-Added = {2008-01-08 14:58:56 -0500},
1322     Date-Modified = {2008-01-08 14:58:59 -0500},
1323     Editor = {Luciano Peitronero and E. Tosatti},
1324     Pages = 399,
1325     Publisher = {North-Holland},
1326     Series = {International Symposium on Fractals in Physics},
1327     Title = {Fractals in Physics},
1328     Year = 1986}
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1333     Date-Modified = {2008-01-08 14:58:59 -0500},
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1339     Year = 1979}
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1344     Date-Modified = {2008-01-08 14:58:59 -0500},
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1353     Date-Added = {2008-01-08 14:58:56 -0500},
1354     Date-Modified = {2008-01-08 14:58:59 -0500},
1355     Journal = jcp,
1356     Pages = 064103,
1357     Title = {Generalized coarse-grained model based on point multipole and Gay-Berne potentials},
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1362     Author = {J. Harden and B. Mbanga and N. Eber and K. Fodor-Csorba and S. Sprunt and J. T. Gleeson and A. Jakli},
1363     Date-Added = {2008-01-08 14:58:56 -0500},
1364     Date-Modified = {2008-01-08 14:58:59 -0500},
1365     Eid = 157802,
1366     Journal = {Physical Review Letters},
1367     Number = 15,
1368     Numpages = 4,
1369     Pages = 157802,
1370     Publisher = {APS},
1371     Title = {Giant Flexoelectricity of Bent-Core Nematic Liquid Crystals},
1372     Volume = 97,
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2327     Date-Modified = {2008-01-08 14:59:01 -0500},
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2357     Booktitle = {The Encyclopedia of Computational Chemistry},
2358     Date-Added = {2008-01-08 14:58:56 -0500},
2359     Date-Modified = {2008-01-08 14:59:01 -0500},
2360     Editor = {P.~v.~R. {Schleyer, {\it et al.}}},
2361     Pages = {271-277},
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2452     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/TheoryTechniques/Ewald/deLeeuw_EwaldSum_80.pdf},
2453     Number = {1752},
2454     Pages = {27-56},
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2472     Date-Modified = {2008-01-08 14:59:01 -0500},
2473     Journal = jacs,
2474     Pages = {8638-8639},
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2481     Date-Added = {2008-01-08 14:58:56 -0500},
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2502     Date-Added = {2008-01-08 14:58:56 -0500},
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2510     @book{Tolman27,
2511     Address = {New York},
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2513     Date-Added = {2008-01-08 14:58:56 -0500},
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2521     Address = {Reading, MA},
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2523     Date-Added = {2008-01-08 14:58:56 -0500},
2524     Date-Modified = {2008-01-08 14:59:02 -0500},
2525     Publisher = {Addison-Wesley},
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2527     Year = 1994}
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2531     Date-Added = {2008-01-08 14:58:56 -0500},
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2542     Date-Added = {2008-01-08 14:58:56 -0500},
2543     Date-Modified = {2008-01-08 14:59:02 -0500},
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2560    
2561     @article{NorbertKucerka04012005,
2562     Abstract = {Quantitative structures of the fully hydrated fluid phases of dimyristoylphosphatidylcholine (DMPC) and dilauroylphosphatidylcholine (DLPC) were obtained at 30{degrees}C. Data for the relative form factors F(qz) for DMPC were obtained using a combination of four methods. 1), Volumetric data provided F(0). 2), Diffuse x-ray scattering from oriented stacks of bilayers provided relative form factors |F(qz)| for high qz, 0.22 < qz < 0.8 A-1. 3), X-ray scattering from extruded unilamellar vesicles with diameter 600 A provided |F(qz)| for low qz, 0.1 < qz < 0.3 A-1. 4), Previous measurements using a liquid crystallographic x-ray method provided |F(2{pi}h/D)| for h = 1 and 2 for a range of nearly fully hydrated D-spacings. The data from method 4 overlap and validate the new unilamellar vesicles data for DMPC, so method 4 is not required for DLPC or future studies. We used hybrid electron density models to obtain structural results from these form factors. Comparison of the model electron density profiles with that of gel phase DMPC provides areas per lipid A, 60.6 {+/-} 0.5 A2 for DMPC and 63.2 {+/-} 0.5 A2 for DLPC. Constraints on the model provided by volume measurements and component volumes obtained from simulations put the electron density profiles {rho}(z) and the corresponding form factors F(qz) on absolute scales. Various thicknesses, such as the hydrophobic thickness and the steric thickness, are obtained and compared to literature values.
2563     },
2564     Author = {Kucerka, Norbert and Liu, Yufeng and Chu, Nanjun and Petrache, Horia I. and Tristram-Nagle, Stephanie and Nagle, John F.},
2565     Date-Added = {2008-01-08 14:58:56 -0500},
2566     Date-Modified = {2008-01-08 14:59:02 -0500},
2567     Doi = {10.1529/biophysj.104.056606},
2568     Eprint = {http://www.biophysj.org/cgi/reprint/88/4/2626.pdf},
2569     Journal = {Biophys. J.},
2570     Number = {4},
2571     Pages = {2626-2637},
2572     Title = {{Structure of Fully Hydrated Fluid Phase DMPC and DLPC Lipid Bilayers Using X-Ray Scattering from Oriented Multilamellar Arrays and from Unilamellar Vesicles}},
2573     Url = {http://www.biophysj.org/cgi/content/abstract/88/4/2626},
2574     Volume = {88},
2575     Year = {2005}}
2576    
2577     @article{Lenz07,
2578     Author = {Olaf Lenz and Friederike Schmid},
2579     Date-Added = {2008-01-08 14:58:56 -0500},
2580     Date-Modified = {2008-01-08 14:59:02 -0500},
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2588     @article{Sun96,
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2590     Date-Added = {2008-01-08 14:58:56 -0500},
2591     Date-Modified = {2008-01-08 14:59:02 -0500},
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2601     Date-Modified = {2008-01-08 14:59:02 -0500},
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2611     Date-Added = {2008-01-08 14:58:56 -0500},
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2662     Date-Added = {2008-01-08 14:58:56 -0500},
2663     Date-Modified = {2008-01-08 14:59:02 -0500},
2664     Journal = pre,
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2672     Date-Added = {2008-01-08 14:58:56 -0500},
2673     Date-Modified = {2008-01-08 14:59:02 -0500},
2674     Journal = pre,
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2756     Journal = {Biochim. Biophys. Acta.},
2757     Pages = {95-109},
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2762     @article{Bembenek96,
2763     Author = {S.~D. Bembenek and B.~B. Laird},
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2765     Date-Modified = {2008-01-08 14:59:02 -0500},
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2773     Author = {T.~A. Andrea and W.~C. Swope and H.~C. Andersen},
2774     Date-Added = {2008-01-08 14:58:56 -0500},
2775     Date-Modified = {2008-01-08 14:59:02 -0500},
2776     Journal = {J. Chem. Phys.},
2777     Local-Url = {file://localhost/Users/cfennell/Documents/pdf_files/WaterSimulation/Andrea_LongRangeForcesInWater_83.pdf},
2778     Number = {9},
2779     Pages = {4576-4584},
2780     Title = {The role of long ranged forces in determining the structure and properties of liquid water},
2781     Volume = {79},
2782     Year = {1983}}
2783    
2784     @article{Brannigan04b,
2785     Author = {G. Brannigan and A.~C. Tamboli and F.~L.~H. Brown},
2786     Date-Added = {2008-01-08 14:58:56 -0500},
2787     Date-Modified = {2008-01-08 14:59:02 -0500},
2788     Journal = jcp,
2789     Key = 121,
2790     Pages = {3259-3271},
2791     Title = {The role of molecular shape in bilayer elasticity and phase behavior},
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2793     Year = 2004}
2794    
2795     @article{Buchner92,
2796     Author = {M. Buchner, B.~M. Ladanyi and R.~M. Stratt},
2797     Date-Added = {2008-01-08 14:58:56 -0500},
2798     Date-Modified = {2008-01-08 14:59:02 -0500},
2799     Journal = jcp,
2800     Pages = {8522-8535},
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2803     Year = 1992}
2804    
2805     @article{Liu96a,
2806     Author = {Y. Liu and T. Ichiye},
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2808     Date-Modified = {2008-01-08 14:59:02 -0500},
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2820     Pages = {133-140},
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2827     Date-Added = {2008-01-08 14:58:56 -0500},
2828     Date-Modified = {2008-01-08 14:59:02 -0500},
2829     Journal = {Physical Review},
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2847     @article{Carlson87,
2848     Author = {J.~M. Carlson and J.~P. Sethna},
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2859     Author = {T. C. Lubensky and F. C. MacKintosh},
2860     Date-Added = {2008-01-08 14:58:56 -0500},
2861     Date-Modified = {2008-01-08 14:59:02 -0500},
2862     Journal = prl,
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2868    
2869     @book{Hansen86,
2870     Address = {London},
2871     Author = {J.~P. Hansen and I.~R. McDonald},
2872     Chapter = 7,
2873     Date-Added = {2008-01-08 14:58:56 -0500},
2874     Date-Modified = {2008-01-08 14:59:02 -0500},
2875     Pages = {199-206},
2876     Publisher = {Academic Press},
2877     Title = {Theory of Simple Liquids},
2878     Year = 1986}
2879    
2880     @article{Marder84,
2881     Author = {M. Marder and H.~L. Frisch and J.~S. Langer and H.~M. McConnell},
2882     Date-Added = {2008-01-08 14:58:56 -0500},
2883     Date-Modified = {2008-01-08 14:59:02 -0500},
2884     Journal = pnas,
2885     Pages = {6559-6561},
2886     Title = {Theory of the intermediate rippled phase of phospholipid bilayers},
2887     Volume = 81,
2888     Year = 1984}
2889    
2890     @book{Tobias90,
2891     Address = {Tucson},
2892     Author = {Sheila Tobias},
2893     Date-Added = {2008-01-08 14:58:56 -0500},
2894     Date-Modified = {2008-01-08 14:59:02 -0500},
2895     Publisher = {Research Corp.},
2896     Title = {They're not Dumb. They're Different: Stalking the Second Tier},
2897     Year = 1990}
2898    
2899     @article{Tao91,
2900     Author = {R. Tao and J. M. Sun},
2901     Date-Added = {2008-01-08 14:58:56 -0500},
2902     Date-Modified = {2008-01-08 14:59:02 -0500},
2903     Journal = prl,
2904     Number = 3,
2905     Pages = {398-401},
2906     Title = {Three-Dimensional Structure of Induced Electrorheological Solid},
2907     Volume = 67,
2908     Year = 1991}
2909    
2910     @article{Bratko95,
2911     Author = {L. Blum and F. Vericat and D. Bratko},
2912     Date-Added = {2008-01-08 14:58:56 -0500},
2913     Date-Modified = {2008-01-08 14:59:02 -0500},
2914     Journal = jcp,
2915     Number = 3,
2916     Pages = {1461-1462},
2917     Title = {Towards an analytical model of water: The octupolar model},
2918     Volume = 102,
2919     Year = 1995}
2920    
2921     @article{Martin98,
2922     Author = {M. Martin and J.~I. Siepmann},
2923     Date-Added = {2008-01-08 14:58:56 -0500},
2924     Date-Modified = {2008-01-08 14:59:02 -0500},
2925     Journal = jpcB,
2926     Pages = {2569-2577},
2927     Title = {Transferable Potentials for Phase Equilibria. 1. United-Atom Description of n-Alkanes},
2928     Volume = 102,
2929     Year = 1998}
2930    
2931     @article{Misbah98,
2932     Author = {C. Misbah and J. Duplat and B. Houchmandzadeh},
2933     Date-Added = {2008-01-08 14:58:56 -0500},
2934     Date-Modified = {2008-01-08 14:59:02 -0500},
2935     Journal = prl,
2936     Number = 20,
2937     Pages = {4598-4601},
2938     Title = {Transition to Ripple Phases in Hydrated Amphiphiles},
2939     Volume = 80,
2940     Year = 1998}
2941    
2942     @article{Alemany98,
2943     Author = {M.~M.~G. Alemany and C. Rey and L.~J. Gallego},
2944     Date-Added = {2008-01-08 14:58:56 -0500},
2945     Date-Modified = {2008-01-08 14:59:02 -0500},
2946     Journal = jcp,
2947     Pages = {5175-5176},
2948     Title = {Transport coefficients of liquid transition metals: A computer simulation study using the embedded atom model},
2949     Volume = 109,
2950     Year = 1998}
2951    
2952     @article{Born12,
2953     Author = {M. Born and Th. Von~Karman},
2954     Date-Added = {2008-01-08 14:58:56 -0500},
2955     Date-Modified = {2008-01-08 14:59:02 -0500},
2956     Journal = {Physik Z.},
2957     Number = {297-309},
2958     Title = {Uber Schwingungen in Raumgittern},
2959     Volume = 13,
2960     Year = 1912}
2961    
2962     @incollection{Angell85,
2963     Address = {Springfield, VA},
2964     Author = {C.~A. Angell},
2965     Booktitle = {Relaxations in Complex Systems},
2966     Date-Added = {2008-01-08 14:58:56 -0500},
2967     Date-Modified = {2008-01-08 14:59:03 -0500},
2968     Editor = {K.~Ngai and G.~B. Wright},
2969     Pages = 1,
2970     Publisher = {National Technical Information Service, U.S. Department of Commerce},
2971     Title = {unknown},
2972     Year = 1985}
2973    
2974     @article{Ribeiro98,
2975     Author = {M.~C.~C. Ribeiro and P.~A. Madden},
2976     Date-Added = {2008-01-08 14:58:56 -0500},
2977     Date-Modified = {2008-01-08 14:59:03 -0500},
2978     Journal = jcp,
2979     Pages = {3256-3263},
2980     Title = {Unstable Modes in Ionic Melts},
2981     Volume = 108,
2982     Year = 1998}
2983    
2984     @article{Mutz1991,
2985     Author = {Mutz, M. and Bensimon, D. and Brienne, M. J.},
2986     Date-Added = {2008-01-08 14:58:56 -0500},
2987     Date-Modified = {2008-01-08 14:59:03 -0500},
2988     Doi = {10.1103/PhysRevLett.67.923},
2989     Journal = {Phys. Rev. Lett.},
2990     Month = {Aug},
2991     Number = {7},
2992     Numpages = {3},
2993     Pages = {923--926},
2994     Publisher = {American Physical Society},
2995     Title = {Wrinkling transition in partially polymerized vesicles},
2996     Volume = {67},
2997     Year = {1991}}
2998    
2999     @article{Wendt78,
3000     Author = {H. Wendt and F.~F. Abraham},
3001     Date-Added = {2008-01-08 14:58:56 -0500},
3002     Date-Modified = {2008-01-08 14:59:03 -0500},
3003     Journal = prl,
3004     Pages = 1244,
3005     Volume = 41,
3006     Year = 1978}
3007    
3008     @unpublished{Truhlar00,
3009     Author = {D.~G. Truhlar and A. Kohen},
3010     Date-Added = {2008-01-08 14:58:56 -0500},
3011     Date-Modified = {2008-01-08 14:59:03 -0500},
3012     Note = {private correspondence},
3013     Year = {2000}}
3014    
3015     @article{Dwyer1977,
3016     Author = {D.~J. Dwyer and G.~W. Simmons and R.~P. Wei},
3017     Date-Added = {2008-01-08 14:58:56 -0500},
3018     Date-Modified = {2008-01-08 14:59:03 -0500},
3019     Journal = {Surf. Sci.},
3020     Pages = 617,
3021     Volume = 64,
3022     Year = 1977}
3023    
3024     @article{Macritche78,
3025     Author = {F. MacRitche},
3026     Date-Added = {2008-01-08 14:58:56 -0500},
3027     Date-Modified = {2008-01-08 14:59:03 -0500},
3028     Journal = {Adv. Protein Chem.},
3029     Pages = 283,
3030     Volume = 32,
3031     Year = 1978}
3032    
3033     @article{Feder80,
3034     Author = {J. Feder},
3035     Date-Added = {2008-01-08 14:58:56 -0500},
3036     Date-Modified = {2008-01-08 14:59:03 -0500},
3037     Journal = {J. Theor. Biol.},
3038     Pages = 237,
3039     Volume = 87,
3040     Year = 1980}
3041    
3042     @article{Ramsden93,
3043     Author = {J.~J. Ramsden},
3044     Date-Added = {2008-01-08 14:58:56 -0500},
3045     Date-Modified = {2008-01-08 14:59:03 -0500},
3046     Journal = prl,
3047     Pages = 295,
3048     Volume = 71,
3049     Year = 1993}
3050    
3051     @article{Egelhoff89,
3052     Author = {W.~F. Egelhoff and I. Jacob},
3053     Date-Added = {2008-01-08 14:58:56 -0500},
3054     Date-Modified = {2008-01-08 14:59:03 -0500},
3055     Journal = prl,
3056     Pages = 921,
3057     Volume = 62,
3058     Year = 1989}
3059    
3060     @article{Dobson1987,
3061     Author = {B.~W. Dobson},
3062     Date-Added = {2008-01-08 14:58:56 -0500},
3063     Date-Modified = {2008-01-08 14:59:03 -0500},
3064     Journal = prb,
3065     Pages = 1068,
3066     Volume = 36,
3067     Year = 1987}
3068    
3069     @article{Davis:1969uq,
3070     Abstract = { Exact solutions of the Stokes equations are derived for the case of two unequal spheres slowly rotating or translating perpendicular to their line of centers in a quiescent, unbounded viscous fluid, following Wakiya[16]. Numerical results are presented for the force and torque coefficients for size ratios from 1[middle dot]0 to 10[middle dot]0, and separations down to 0[middle dot]001 times the radius of the smaller.},
3071     Author = {Davis, M. H.},
3072     Date-Added = {2008-01-08 14:57:14 -0500},
3073     Date-Modified = {2008-01-08 14:57:14 -0500},
3074     Journal = {Chemical Engineering Science},
3075     Number = {12},
3076     Pages = {1769--1776},
3077     Title = {The slow translation and rotation of two unequal spheres in a viscous fluid},
3078     Ty = {JOUR},
3079     Url = {http://www.sciencedirect.com/science/article/B6TFK-445H8BM-84/2/b34951283900cdde792ec1309ec51565},
3080     Volume = {24},
3081     Year = {1969}}
3082    
3083     @article{Stimson:1926qy,
3084     Author = {Stimson, M and Jeffery, GB},
3085     Date-Added = {2008-01-08 14:51:23 -0500},
3086     Date-Modified = {2008-01-08 14:51:35 -0500},
3087     Journal = {Proceedings of the Royal Society of London Series A-Containing Papers of a Mathematical and Physical Character},
3088     Pages = {110-116},
3089     Title = {The motion of two spheres in a viscous fluid},
3090     Volume = {111},
3091     Year = {1926}}
3092    
3093     @article{Orlandi:2006fk,
3094     Abstract = {Liquid crystal phases formed by bent-shaped (or {\tt{}"{}}banana{\tt{}"{}}) molecules are currently of great interest. Here we investigate by Monte Carlo computer simulations the phases formed by rigid banana molecules modeled combining three Gay-Berne sites and containing either one central or two lateral and transversal dipoles. We show that changing the dipole position and orientation has a profound effect on the mesophase stability and molecular organization. In particular, we find a uniaxial nematic phase only for off-center dipolar models and tilted phases only for the one with terminal dipoles.},
3095     Address = {Dipartimento di Chimica Fisica e Inorganica, and INSTM, Universita di Bologna, Viale Risorgimento 4, 40136 Bologna, Italy.},
3096     Au = {Orlandi, S and Berardi, R and Steltzer, J and Zannoni, C},
3097     Author = {Orlandi, Silvia and Berardi, Roberto and Steltzer, Joachim and Zannoni, Claudio},
3098     Da = {20060407},
3099     Date-Added = {2008-01-08 14:47:56 -0500},
3100     Date-Modified = {2008-01-08 14:48:06 -0500},
3101     Dcom = {20070727},
3102     Doi = {10.1063/1.2176622},
3103     Edat = {2006/04/08 09:00},
3104     Issn = {0021-9606 (Print)},
3105     Jid = {0375360},
3106     Journal = {J Chem Phys},
3107     Jt = {The Journal of chemical physics},
3108     Language = {eng},
3109     Mhda = {2006/04/08 09:01},
3110     Number = {12},
3111     Own = {NLM},
3112     Pages = {124907},
3113     Pl = {United States},
3114     Pmid = {16599725},
3115     Pst = {ppublish},
3116     Pt = {Journal Article},
3117     Pubm = {Print},
3118     So = {J Chem Phys. 2006 Mar 28;124(12):124907.},
3119     Stat = {PubMed-not-MEDLINE},
3120     Title = {A Monte Carlo study of the mesophases formed by polar bent-shaped molecules.},
3121     Volume = {124},
3122     Year = {2006}}
3123    
3124     @article{sun:031602,
3125     Author = {Xiuquan Sun and J. Daniel Gezelter},
3126     Date-Added = {2008-01-08 14:42:33 -0500},
3127     Date-Modified = {2008-01-08 14:42:33 -0500},
3128     Doi = {10.1103/PhysRevE.75.031602},
3129     Eid = {031602},
3130     Journal = {Physical Review E (Statistical, Nonlinear, and Soft Matter Physics)},
3131     Keywords = {lattice theory; membranes},
3132     Number = {3},
3133     Numpages = {7},
3134     Pages = {031602},
3135     Publisher = {APS},
3136     Title = {Spontaneous corrugation of dipolar membranes},
3137     Url = {http://link.aps.org/abstract/PRE/v75/e031602},
3138     Volume = {75},
3139     Year = {2007}}
3140    
3141     @article{Ortega:2007lr,
3142     Abstract = {The equivalent radius for any solution property is the radius of a spherical particle having the same value of solution property as that of the macromolecule under consideration. Equivalent radii for different properties present a dependence on size and shape that are more similar than the values of the properties themselves. Furthermore, the ratios of equivalent radii of two properties depend on the conformation (shape or flexibility), but not on the absolute sizes. We define equivalent radii and their ratios, and describe their evaluation for some common models of rigid and flexible macromolecules. Using radii and ratios, we have devised procedures to fit macromolecular models to experimental properties, allowing the determination of the model parameters. Using these quantities, we can construct target functions for an equilibrated, unbiased optimization. The procedures, which have been implemented in public-domain computer programs, are illustrated for rigid, globular proteins, and the rodlike tobacco mosaic virus, and for semiflexible, wormlike heparin molecules.},
3143     Address = {Departamento de Quimica Fisica, Facultad de Quimica, Universidad de Murcia, 30071 Murcia, Spain.},
3144     Au = {Ortega, A and Garcia de la Torre, J},
3145     Author = {Ortega, A and Garcia de la Torre, J},
3146     Da = {20070813},
3147     Date-Added = {2008-01-08 14:38:03 -0500},
3148     Date-Modified = {2008-01-08 14:38:49 -0500},
3149     Dcom = {20071017},
3150     Dep = {20070724},
3151     Doi = {10.1021/bm700473f},
3152     Edat = {2007/07/25 09:00},
3153     Issn = {1525-7797 (Print)},
3154     Jid = {100892849},
3155     Journal = {Biomacromolecules},
3156     Jt = {Biomacromolecules},
3157     Keywords = {Computer Simulation; Heparin/chemistry; Macromolecular Substances/*chemistry; *Models, Chemical; *Models, Molecular; Molecular Conformation; Particle Size; Protein Conformation; Proteins/chemistry; Software; Solutions},
3158     Language = {eng},
3159     Mhda = {2007/10/18 09:00},
3160     Number = {8},
3161     Own = {NLM},
3162     Pages = {2464--2475},
3163     Phst = {2007/07/24 {$[$}aheadofprint{$]$}},
3164     Pl = {United States},
3165     Pmid = {17645309},
3166     Pst = {ppublish},
3167     Pt = {Journal Article; Research Support, Non-U.S. Gov't},
3168     Pubm = {Print-Electronic},
3169     Rn = {0 (Macromolecular Substances); 0 (Proteins); 0 (Solutions); 9005-49-6 (Heparin)},
3170     Sb = {IM},
3171     So = {Biomacromolecules. 2007 Aug;8(8):2464-75. Epub 2007 Jul 24.},
3172     Stat = {MEDLINE},
3173     Title = {Equivalent radii and ratios of radii from solution properties as indicators of macromolecular conformation, shape, and flexibility.},
3174     Volume = {8},
3175     Year = {2007}}
3176    
3177     @article{Torre2003,
3178     Abstract = {While the prediction of hydrodynamic properties of rigid particles
3179 tim 2999 is nowadays feasible using simple and efficient computer programs,
3180     the calculation of such properties and, in general, the dynamic
3181     behavior of flexible macromolecules has not reached a similar situation.
3182     Although the theories are available, usually the computational work
3183     is done using solutions specific for each problem. We intend to
3184     develop computer programs that would greatly facilitate the task
3185     of predicting solution behavior of flexible macromolecules. In this
3186     paper, we first present an overview of the two approaches that are
3187     most practical: the Monte Carlo rigid-body treatment, and the Brownian
3188     dynamics simulation technique. The Monte Carlo procedure is based
3189     on the calculation of properties for instantaneous conformations
3190     of the macromolecule that are regarded as if they were instantaneously
3191     rigid. We describe how a Monte Carlo program can be interfaced to
3192     the programs in the HYDRO suite for rigid particles, and provide
3193     an example of such calculation, for a hypothetical particle: a protein
3194     with two domains connected by a flexible linker. We also describe
3195     briefly the essentials of Brownian dynamics, and propose a general
3196     mechanical model that includes several kinds of intramolecular interactions,
3197     such as bending, internal rotation, excluded volume effects, etc.
3198     We provide an example of the application of this methodology to
3199     the dynamics of a semiflexible, wormlike DNA.},
3200 gezelter 3302 Annote = {724XK Times Cited:6 Cited References Count:64},
3201     Author = {J. G. {de la Torre} and H. E. Sanchez and A. Ortega and J. G. Hernandez and M. X. Fernandes and F. G. Diaz and M. C. L. Martinez},
3202     Issn = {0175-7571},
3203     Journal = {European Biophysics Journal with Biophysics Letters},
3204     Month = {Aug},
3205     Number = {5},
3206     Pages = {477-486},
3207     Title = {Calculation of the solution properties of flexible macromolecules: methods and applications},
3208     Uri = {<Go to ISI>://000185513400011},
3209     Volume = {32},
3210     Year = {2003}}
3211 tim 2746
3212 gezelter 3302 @article{Alakent2005,
3213     Abstract = {Time series analysis tools are employed on the principal modes obtained
3214 tim 2999 from the C-alpha trajectories from two independent molecular-dynamics
3215     simulations of alpha-amylase inhibitor (tendamistat). Fluctuations
3216     inside an energy minimum (intraminimum motions), transitions between
3217     minima (interminimum motions), and relaxations in different hierarchical
3218     energy levels are investigated and compared with those encountered
3219     in vacuum by using different sampling window sizes and intervals.
3220     The low-frequency low-indexed mode relationship, established in
3221     vacuum, is also encountered in water, which shows the reliability
3222     of the important dynamics information offered by principal components
3223     analysis in water. It has been shown that examining a short data
3224     collection period (100 ps) may result in a high population of overdamped
3225     modes, while some of the low-frequency oscillations (< 10 cm(-1))
3226     can be captured in water by using a longer data collection period
3227     (1200 ps). Simultaneous analysis of short and long sampling window
3228     sizes gives the following picture of the effect of water on protein
3229     dynamics. Water makes the protein lose its memory: future conformations
3230     are less dependent on previous conformations due to the lowering
3231     of energy barriers in hierarchical levels of the energy landscape.
3232     In short-time dynamics (< 10 ps), damping factors extracted from
3233     time series model parameters are lowered. For tendamistat, the friction
3234     coefficient in the Langevin equation is found to be around 40-60
3235     cm(-1) for the low-indexed modes, compatible with literature. The
3236     fact that water has increased the friction and that on the other
3237     hand has lubrication effect at first sight contradicts. However,
3238     this comes about because water enhances the transitions between
3239     minima and forces the protein to reduce its already inherent inability
3240     to maintain oscillations observed in vacuum. Some of the frequencies
3241     lower than 10 cm(-1) are found to be overdamped, while those higher
3242     than 20 cm(-1) are slightly increased. As for the long-time dynamics
3243     in water, it is found that random-walk motion is maintained for
3244     approximately 200 ps (about five times of that in vacuum) in the
3245     low-indexed modes, showing the lowering of energy barriers between
3246     the higher-level minima.},
3247 gezelter 3302 Annote = {973OH Times Cited:1 Cited References Count:33},
3248     Author = {B. Alakent and M. C. Camurdan and P. Doruker},
3249     Issn = {0021-9606},
3250     Journal = {Journal of Chemical Physics},
3251     Month = {Oct 8},
3252     Number = {14},
3253     Pages = {-},
3254     Title = {Hierarchical structure of the energy landscape of proteins revisited by time series analysis. II. Investigation of explicit solvent effects},
3255     Uri = {<Go to ISI>://000232532000064},
3256     Volume = {123},
3257     Year = {2005}}
3258 tim 2746
3259 gezelter 3302 @book{Alexander1987,
3260     Address = {New York},
3261     Author = {C. Alexander},
3262     Publisher = {Oxford University Press},
3263     Title = {A Pattern Language: Towns, Buildings, Construction},
3264     Year = {1987}}
3265 tim 2999
3266 gezelter 3302 @book{Allen1987,
3267     Address = {New York},
3268     Author = {M.~P. Allen and D.~J. Tildesley},
3269     Publisher = {Oxford University Press},
3270     Title = {Computer Simulations of Liquids},
3271     Year = {1987}}
3272 tim 2999
3273 gezelter 3302 @article{Allison1991,
3274     Abstract = {A Brownian dynamics algorithm is developed to simulate dynamics experiments
3275 tim 2999 of rigid macromolecules. It is applied to polarized dynamic light
3276     scattering from rodlike sturctures and from a model of a DNA fragment
3277     (762 base pairs). A number of rod cases are examined in which the
3278     translational anisotropy is increased form zero to a large value.
3279     Simulated first cumulants as well as amplitudes and lifetimes of
3280     the dynamic form factor are compared with predictions of analytic
3281     theories and found to be in very good agreement with them. For DNA
3282     fragments 762 base pairs in length or longer, translational anisotropy
3283     does not contribute significantly to dynamic light scattering. In
3284     a comparison of rigid and flexible simulations on semistiff models
3285     of this fragment, it is shown directly that flexing contributes
3286     to the faster decay processes probed by light scattering and that
3287     the flexible model studies are in good agreement with experiment.},
3288 gezelter 3302 Annote = {Eu814 Times Cited:8 Cited References Count:32},
3289     Author = {S. A. Allison},
3290     Issn = {0024-9297},
3291     Journal = {Macromolecules},
3292     Month = {Jan 21},
3293     Number = {2},
3294     Pages = {530-536},
3295     Title = {A Brownian Dynamics Algorithm for Arbitrary Rigid Bodies - Application to Polarized Dynamic Light-Scattering},
3296     Uri = {<Go to ISI>://A1991EU81400029},
3297     Volume = {24},
3298     Year = {1991}}
3299 tim 2746
3300 gezelter 3302 @article{Andersen1983,
3301     Annote = {Rq238 Times Cited:559 Cited References Count:14},
3302     Author = {H. C. Andersen},
3303     Issn = {0021-9991},
3304     Journal = {Journal of Computational Physics},
3305     Number = {1},
3306     Pages = {24-34},
3307     Title = {Rattle - a Velocity Version of the Shake Algorithm for Molecular-Dynamics Calculations},
3308     Uri = {<Go to ISI>://A1983RQ23800002},
3309     Volume = {52},
3310     Year = {1983}}
3311 tim 2999
3312 gezelter 3302 @article{Auerbach2005,
3313     Abstract = {Acetylcholine receptor channels (AChRs) are proteins that switch between
3314 tim 2999 stable #closed# and #open# conformations. In patch clamp recordings,
3315     diliganded AChR gating appears to be a simple, two-state reaction.
3316     However, mutagenesis studies indicate that during gating dozens
3317     of residues across the protein move asynchronously and are organized
3318     into rigid body gating domains (#blocks#). Moreover, there is an
3319     upper limit to the apparent channel opening rate constant. These
3320     observations suggest that the gating reaction has a broad, corrugated
3321     transition state region, with the maximum opening rate reflecting,
3322     in part, the mean first-passage time across this ensemble. Simulations
3323     reveal that a flat, isotropic energy profile for the transition
3324     state can account for many of the essential features of AChR gating.
3325     With this mechanism, concerted, local structural transitions that
3326     occur on the broad transition state ensemble give rise to fractional
3327     measures of reaction progress (Phi values) determined by rate-equilibrium
3328     free energy relationship analysis. The results suggest that the
3329     coarse-grained AChR gating conformational change propagates through
3330     the protein with dynamics that are governed by the Brownian motion
3331     of individual gating blocks.},
3332 gezelter 3302 Annote = {895QF Times Cited:9 Cited References Count:33},
3333     Author = {A. Auerbach},
3334     Issn = {0027-8424},
3335     Journal = {Proceedings of the National Academy of Sciences of the United States of America},
3336     Month = {Feb 1},
3337     Number = {5},
3338     Pages = {1408-1412},
3339     Title = {Gating of acetylcholine receptor channels: Brownian motion across a broad transition state},
3340     Uri = {<Go to ISI>://000226877300030},
3341     Volume = {102},
3342     Year = {2005}}
3343 tim 2746
3344 gezelter 3302 @article{Baber1995,
3345     Abstract = {The effect of the general anesthetics halothane, enflurane, and isoflurane
3346 tim 2999 on hydrocarbon chain packing in palmitoyl(d(31))oleoylphosphatidylcholine
3347     membranes in the liquid crystalline phase was investigated using
3348     H-2 NMR. Upon the addition of the anesthetics, the first five methylene
3349     units near the interface generally show a very small increase in
3350     segmental order, while segments deeper within the bilayer show a
3351     small decrease in segmental order. From the H-2 NMR results, the
3352     chain length for the perdeuterated palmitoyl chain in the absence
3353     of anesthetic was found to be 12.35 Angstrom. Upon the addition
3354     of halothane enflurane, or isoflurane, the acyl chain undergoes
3355     slight contractions of 0.11, 0.20, or 0.16 Angstrom, respectively,
3356     at 50 mol % anesthetic. A simple model was used to estimate the
3357     relative amounts of anesthetic located near the interface and deeper
3358     in the bilayer hydrocarbon region, and only a slight preference
3359     for an interfacial location was observed. Intermolecular H-1-H-1
3360     nuclear Overhauser effects (NOEs) were measured between phospholipid
3361     and halothane protons. These NOEs are consistent with the intramembrane
3362     location of the anesthetics suggested by the H-2 NMR data. In addition,
3363     the NOE data indicate that anesthetics prefer the interfacial and
3364     hydrocarbon regions of the membrane and are not found in high concentrations
3365     in the phospholipid headgroup.},
3366 gezelter 3302 Annote = {Qz716 Times Cited:38 Cited References Count:37},
3367     Author = {J. Baber and J. F. Ellena and D. S. Cafiso},
3368     Issn = {0006-2960},
3369     Journal = {Biochemistry},
3370     Month = {May 16},
3371     Number = {19},
3372     Pages = {6533-6539},
3373     Title = {Distribution of General-Anesthetics in Phospholipid-Bilayers Determined Using H-2 Nmr and H-1-H-1 Noe Spectroscopy},
3374     Uri = {<Go to ISI>://A1995QZ71600035},
3375     Volume = {34},
3376     Year = {1995}}
3377 tim 2999
3378 gezelter 3302 @article{Banerjee2004,
3379     Abstract = {Based on a coherent state representation of noise operator and an
3380 tim 2999 ensemble averaging procedure using Wigner canonical thermal distribution
3381     for harmonic oscillators, a generalized quantum Langevin equation
3382     has been recently developed [Phys. Rev. E 65, 021109 (2002); 66,
3383     051106 (2002)] to derive the equations of motion for probability
3384     distribution functions in c-number phase-space. We extend the treatment
3385     to explore several systematic approximation schemes for the solutions
3386     of the Langevin equation for nonlinear potentials for a wide range
3387     of noise correlation, strength and temperature down to the vacuum
3388     limit. The method is exemplified by an analytic application to harmonic
3389     oscillator for arbitrary memory kernel and with the help of a numerical
3390     calculation of barrier crossing, in a cubic potential to demonstrate
3391     the quantum Kramers' turnover and the quantum Arrhenius plot. (C)
3392     2004 American Institute of Physics.},
3393 gezelter 3302 Annote = {816YY Times Cited:8 Cited References Count:35},
3394     Author = {D. Banerjee and B. C. Bag and S. K. Banik and D. S. Ray},
3395     Issn = {0021-9606},
3396     Journal = {Journal of Chemical Physics},
3397     Month = {May 15},
3398     Number = {19},
3399     Pages = {8960-8972},
3400     Title = {Solution of quantum Langevin equation: Approximations, theoretical and numerical aspects},
3401     Uri = {<Go to ISI>://000221146400009},
3402     Volume = {120},
3403     Year = {2004}}
3404 tim 2746
3405 gezelter 3302 @article{Barojas1973,
3406     Author = {J. Barojas and D. Levesque},
3407     Journal = {Phys. Rev. A},
3408     Pages = {1092-1105},
3409     Title = {Simulation of Diatomic Homonuclear Liquids},
3410     Volume = {7},
3411     Year = {1973}}
3412 tim 2999
3413 gezelter 3302 @article{Barth1998,
3414     Abstract = {We present an efficient new method termed LN for propagating biomolecular
3415 tim 2999 dynamics according to the Langevin equation that arose fortuitously
3416     upon analysis of the range of harmonic validity of our normal-mode
3417     scheme LIN. LN combines force linearization with force splitting
3418     techniques and disposes of LIN'S computationally intensive minimization
3419     (anharmonic correction) component. Unlike the competitive multiple-timestepping
3420     (MTS) schemes today-formulated to be symplectic and time-reversible-LN
3421     merges the slow and fast forces via extrapolation rather than impulses;
3422     the Langevin heat bath prevents systematic energy drifts. This combination
3423     succeeds in achieving more significant speedups than these MTS methods
3424     which are Limited by resonance artifacts to an outer timestep less
3425     than some integer multiple of half the period of the fastest motion
3426     (around 4-5 fs for biomolecules). We show that LN achieves very
3427     good agreement with small-timestep solutions of the Langevin equation
3428     in terms of thermodynamics (energy means and variances), geometry,
3429     and dynamics (spectral densities) for two proteins in vacuum and
3430     a large water system. Significantly, the frequency of updating the
3431     slow forces extends to 48 fs or more, resulting in speedup factors
3432     exceeding 10. The implementation of LN in any program that employs
3433     force-splitting computations is straightforward, with only partial
3434     second-derivative information required, as well as sparse Hessian/vector
3435     multiplication routines. The linearization part of LN could even
3436     be replaced by direct evaluation of the fast components. The application
3437     of LN to biomolecular dynamics is well suited for configurational
3438     sampling, thermodynamic, and structural questions. (C) 1998 American
3439     Institute of Physics.},
3440 gezelter 3302 Annote = {105HH Times Cited:29 Cited References Count:49},
3441     Author = {E. Barth and T. Schlick},
3442     Issn = {0021-9606},
3443     Journal = {Journal of Chemical Physics},
3444     Month = {Aug 1},
3445     Number = {5},
3446     Pages = {1617-1632},
3447     Title = {Overcoming stability limitations in biomolecular dynamics. I. Combining force splitting via extrapolation with Langevin dynamics in LN},
3448     Uri = {<Go to ISI>://000075066300006},
3449     Volume = {109},
3450     Year = {1998}}
3451 tim 2746
3452 gezelter 3302 @article{Batcho2001,
3453     Abstract = {We present an analysis for a simple two-component harmonic oscillator
3454 tim 2999 that compares the use of position-Verlet to velocity-Verlet for
3455     multiple-time step integration. The numerical stability analysis
3456     based on the impulse-Verlet splitting shows that position-Verlet
3457     has enhanced stability, in terms of the largest allowable time step,
3458     for cases where an ample separation of time scales exists. Numerical
3459     investigations confirm the advantages of the position-Verlet scheme
3460     when used for the fastest time scales of the system. Applications
3461     to a biomolecule. a solvated protein, for both Newtonian and Langevin
3462     dynamics echo these trends over large outer time-step regimes. (C)
3463     2001 American Institute of Physics.},
3464 gezelter 3302 Annote = {469KV Times Cited:6 Cited References Count:30},
3465     Author = {P. F. Batcho and T. Schlick},
3466     Issn = {0021-9606},
3467     Journal = {Journal of Chemical Physics},
3468     Month = {Sep 1},
3469     Number = {9},
3470     Pages = {4019-4029},
3471     Title = {Special stability advantages of position-Verlet over velocity-Verlet in multiple-time step integration},
3472     Uri = {<Go to ISI>://000170813800005},
3473     Volume = {115},
3474     Year = {2001}}
3475 tim 2746
3476 gezelter 3302 @article{Bates2005,
3477     Abstract = {Inspired by recent claims that compounds composed of V-shaped molecules
3478 tim 2999 can exhibit the elusive biaxial nematic phase, we have developed
3479     a generic simulation model for such systems. This contains the features
3480     of the molecule that are essential to its liquid crystal behavior,
3481     namely the anisotropies of the two arms and the angle between them.
3482     The behavior of the model has been investigated using Monte Carlo
3483     simulations for a wide range of these structural parameters. This
3484     allows us to establish the relationship between the V-shaped molecule
3485     and its ability to form a biaxial nematic phase. Of particular importance
3486     are the criteria of geometry and the relative anisotropy necessary
3487     for the system to exhibit a Landau point, at which the biaxial nematic
3488     is formed directly from the isotropic phase. The simulations have
3489     also been used to determine the orientational order parameters for
3490     a selection of molecular axes. These are especially important because
3491     they reveal the phase symmetry and are connected to the experimental
3492     determination of this. The simulation results show that, whereas
3493     some positions are extremely sensitive to the phase biaxiality,
3494     others are totally blind to this.},
3495 gezelter 3302 Annote = {Part 1 988LQ Times Cited:0 Cited References Count:38},
3496     Author = {M. A. Bates and G. R. Luckhurst},
3497     Issn = {1539-3755},
3498     Journal = {Physical Review E},
3499     Month = {Nov},
3500     Number = {5},
3501     Pages = {-},
3502     Title = {Biaxial nematic phases and V-shaped molecules: A Monte Carlo simulation study},
3503     Uri = {<Go to ISI>://000233603100030},
3504     Volume = {72},
3505     Year = {2005}}
3506 tim 2999
3507 gezelter 3302 @article{Beard2003,
3508     Abstract = {We introduce an unbiased protocol for performing rotational moves
3509 tim 2999 in rigid-body dynamics simulations. This approach - based on the
3510     analytic solution for the rotational equations of motion for an
3511     orthogonal coordinate system at constant angular velocity - removes
3512     deficiencies that have been largely ignored in Brownian dynamics
3513     simulations, namely errors for finite rotations that result from
3514     applying the noncommuting rotational matrices in an arbitrary order.
3515     Our algorithm should thus replace standard approaches to rotate
3516     local coordinate frames in Langevin and Brownian dynamics simulations.},
3517 gezelter 3302 Annote = {736UA Times Cited:0 Cited References Count:11},
3518     Author = {D. A. Beard and T. Schlick},
3519     Issn = {0006-3495},
3520     Journal = {Biophysical Journal},
3521     Month = {Nov 1},
3522     Number = {5},
3523     Pages = {2973-2976},
3524     Title = {Unbiased rotational moves for rigid-body dynamics},
3525     Uri = {<Go to ISI>://000186190500018},
3526     Volume = {85},
3527     Year = {2003}}
3528 tim 2746
3529 gezelter 3302 @article{Beloborodov1998,
3530     Abstract = {Using the Green function of arbitrary rigid Brownian diffusion (Goldstein,
3531 tim 2999 Biopolymers 33, 409-436, 1993), it was analytically shown that coupling
3532     between translation and rotation diffusion degrees of freedom does
3533     not affect the correlation functions relevant to the NMR intramolecular
3534     relaxation. It follows that spectral densities usually used for
3535     the anisotropic rotation diffusion (Woessner, J. Chem. Phys. 37,
3536     647-654, 1962) can be regarded as exact in respect to the rotation-translation
3537     coupling for the spin system connected with a rigid body. (C) 1998
3538     Academic Press.},
3539 gezelter 3302 Annote = {Zu605 Times Cited:2 Cited References Count:6},
3540     Author = {I. S. Beloborodov and V. Y. Orekhov and A. S. Arseniev},
3541     Issn = {1090-7807},
3542     Journal = {Journal of Magnetic Resonance},
3543     Month = {Jun},
3544     Number = {2},
3545     Pages = {328-329},
3546     Title = {Effect of coupling between rotational and translational Brownian motions on NMR spin relaxation: Consideration using green function of rigid body diffusion},
3547     Uri = {<Go to ISI>://000074214800017},
3548     Volume = {132},
3549     Year = {1998}}
3550 tim 2746
3551 gezelter 3302 @article{Berardi1996,
3552     Abstract = {We demonstrate that the overall molecular dipole organization in a
3553 tim 2999 smectic liquid crystal formed of polar molecules can be strongly
3554     influenced by the position of the dipole in the molecule. We study
3555     by large scale Monte Carlo simulations systems of attractive-repulsive
3556     ''Gay-Berne'' elongated ellipsoids with an axial dipole at the center
3557     or near the end of the molecule and we show that monolayer smectic
3558     liquid crystals and modulated antiferroelectric bilayer stripe domains
3559     similar to the experimentally observed ''antiphase'' structures
3560     are obtained in the two cases.},
3561 gezelter 3302 Annote = {Vn637 Times Cited:49 Cited References Count:26},
3562     Author = {R. Berardi and S. Orlandi and C. Zannoni},
3563     Issn = {0009-2614},
3564     Journal = {Chemical Physics Letters},
3565     Month = {Oct 18},
3566     Number = {3},
3567     Pages = {357-362},
3568     Title = {Antiphase structures in polar smectic liquid crystals and their molecular origin},
3569     Uri = {<Go to ISI>://A1996VN63700023},
3570     Volume = {261},
3571     Year = {1996}}
3572 tim 2746
3573 gezelter 3302 @article{Berkov2005,
3574     Abstract = {In this paper a detailed numerical study (in frames of the Slonczewski
3575 tim 2999 formalism) of magnetization oscillations driven by a spin-polarized
3576     current through a thin elliptical nanoelement is presented. We show
3577     that a sophisticated micromagnetic model, where a polycrystalline
3578     structure of a nanoelement is taken into account, can explain qualitatively
3579     all most important features of the magnetization oscillation spectra
3580     recently observed experimentally [S. I. Kiselev , Nature 425, 380
3581     (2003)], namely, existence of several equidistant spectral bands,
3582     sharp onset and abrupt disappearance of magnetization oscillations
3583     with increasing current, absence of the out-of-plane regime predicted
3584     by a macrospin model, and the relation between frequencies of so-called
3585     small-angle and quasichaotic oscillations. However, a quantitative
3586     agreement with experimental results (especially concerning the frequency
3587     of quasichaotic oscillations) could not be achieved in the region
3588     of reasonable parameter values, indicating that further model refinement
3589     is necessary for a complete understanding of the spin-driven magnetization
3590     precession even in this relatively simple experimental situation.},
3591 gezelter 3302 Annote = {969IT Times Cited:2 Cited References Count:55},
3592     Author = {D. V. Berkov and N. L. Gorn},
3593     Issn = {1098-0121},
3594     Journal = {Physical Review B},
3595     Month = {Sep},
3596     Number = {9},
3597     Pages = {-},
3598     Title = {Magnetization precession due to a spin-polarized current in a thin nanoelement: Numerical simulation study},
3599     Uri = {<Go to ISI>://000232228500058},
3600     Volume = {72},
3601     Year = {2005}}
3602 tim 2746
3603 gezelter 3302 @article{Berkov2005a,
3604     Abstract = {Numerical simulations of fast remagnetization processes using stochastic
3605 tim 2999 dynamics are widely used to study various magnetic systems. In this
3606     paper, we first address several crucial methodological problems
3607     of such simulations: (i) the influence of finite-element discretization
3608     on simulated dynamics, (ii) choice between Ito and Stratonovich
3609     stochastic calculi by the solution of micromagnetic stochastic equations
3610     of motion and (iii) non-trivial correlation properties of the random
3611     (thermal) field. Next, we discuss several examples to demonstrate
3612     the great potential of the Langevin dynamics for studying fast remagnetization
3613     processes in technically relevant applications: we present numerical
3614     analysis of equilibrium magnon spectra in patterned structures,
3615     study thermal noise effects on the magnetization dynamics of nanoelements
3616     in pulsed fields and show some results for a remagnetization dynamics
3617     induced by a spin-polarized current. (c) 2004 Elsevier B.V. All
3618     rights reserved.},
3619 gezelter 3302 Annote = {Part 1 Sp. Iss. SI 922KU Times Cited:2 Cited References Count:25},
3620     Author = {D. V. Berkov and N. L. Gorn},
3621     Issn = {0304-8853},
3622     Journal = {Journal of Magnetism and Magnetic Materials},
3623     Month = {Apr},
3624     Pages = {442-448},
3625     Title = {Stochastic dynamic simulations of fast remagnetization processes: recent advances and applications},
3626     Uri = {<Go to ISI>://000228837600109},
3627     Volume = {290},
3628     Year = {2005}}
3629 tim 2999
3630 gezelter 3302 @article{Berkov2002,
3631     Abstract = {We report on recent progress achieved by the development of numerical
3632 tim 2999 methods based on the stochastic (Langevin) dynamics applied to systems
3633     of interacting magnetic nanoparticles. The method enables direct
3634     simulations of the trajectories of magnetic moments taking into
3635     account (i) all relevant interactions, (ii) precession dynamics,
3636     and (iii) temperature fluctuations included via the random (thermal)
3637     field. We present several novel results obtained using new methods
3638     developed for the solution of the Langevin equations. In particular,
3639     we have investigated magnetic nanodots and disordered granular systems
3640     of single-domain magnetic particles. For the first case we have
3641     calculated the spectrum and the spatial distribution of spin excitations.
3642     For the second system the complex ac susceptibility chi(omega, T)
3643     for various particle concentrations and particle anisotropies were
3644     computed and compared with numerous experimental results.},
3645 gezelter 3302 Annote = {526TF Times Cited:4 Cited References Count:37},
3646     Author = {D. V. Berkov and N. L. Gorn and P. Gornert},
3647     Issn = {0031-8965},
3648     Journal = {Physica Status Solidi a-Applied Research},
3649     Month = {Feb 16},
3650     Number = {2},
3651     Pages = {409-421},
3652     Title = {Magnetization dynamics in nanoparticle systems: Numerical simulation using Langevin dynamics},
3653     Uri = {<Go to ISI>://000174145200026},
3654     Volume = {189},
3655     Year = {2002}}
3656 tim 2746
3657 gezelter 3302 @article{Bernal1980,
3658     Author = {J.M. Bernal and J. G. {de la Torre}},
3659     Journal = {Biopolymers},
3660     Pages = {751-766},
3661     Title = {Transport Properties and Hydrodynamic Centers of Rigid Macromolecules with Arbitrary Shape},
3662     Volume = {19},
3663     Year = {1980}}
3664 tim 2746
3665 gezelter 3302 @article{Brenner1967,
3666     Author = {H. Brenner},
3667     Journal = {J. Collid. Int. Sci.},
3668     Pages = {407-436},
3669     Title = {Coupling between the Translational and Rotational Brownian Motions of Rigid Particles of Arbitrary shape},
3670     Volume = {23},
3671     Year = {1967}}
3672 tim 2999
3673 gezelter 3302 @article{Brooks1983,
3674     Annote = {Qp423 Times Cited:6414 Cited References Count:96},
3675     Author = {B. R. Brooks and R. E. Bruccoleri and B. D. Olafson and D. J. States and S. Swaminathan and M. Karplus},
3676     Issn = {0192-8651},
3677     Journal = {Journal of Computational Chemistry},
3678     Number = {2},
3679     Pages = {187-217},
3680     Title = {Charmm - a Program for Macromolecular Energy, Minimization, and Dynamics Calculations},
3681     Uri = {<Go to ISI>://A1983QP42300010},
3682     Volume = {4},
3683     Year = {1983}}
3684 tim 2999
3685 gezelter 3302 @article{Brunger1984,
3686     Annote = {Sm173 Times Cited:143 Cited References Count:22},
3687     Author = {A. Brunger and C. L. Brooks and M. Karplus},
3688     Issn = {0009-2614},
3689     Journal = {Chemical Physics Letters},
3690     Number = {5},
3691     Pages = {495-500},
3692     Title = {Stochastic Boundary-Conditions for Molecular-Dynamics Simulations of St2 Water},
3693     Uri = {<Go to ISI>://A1984SM17300007},
3694     Volume = {105},
3695     Year = {1984}}
3696 tim 2746
3697 gezelter 3302 @article{Budd1999,
3698     Abstract = {This paper examines a synthesis of adaptive mesh methods with the
3699 tim 2999 use of symmetry to study a partial differential equation. In particular,
3700     it considers methods which admit discrete self-similar solutions,
3701     examining the convergence of these to the true self-similar solution
3702     as well as their stability. Special attention is given to the nonlinear
3703     diffusion equation describing flow in a porous medium.},
3704 gezelter 3302 Annote = {199EE Times Cited:4 Cited References Count:14},
3705     Author = {C. J. Budd and G. J. Collins and W. Z. Huang and R. D. Russell},
3706     Issn = {1364-503X},
3707     Journal = {Philosophical Transactions of the Royal Society of London Series a-Mathematical Physical and Engineering Sciences},
3708     Month = {Apr 15},
3709     Number = {1754},
3710     Pages = {1047-1077},
3711     Title = {Self-similar numerical solutions of the porous-medium equation using moving mesh methods},
3712     Uri = {<Go to ISI>://000080466800005},
3713     Volume = {357},
3714     Year = {1999}}
3715 tim 2999
3716 gezelter 3302 @article{Camp1999,
3717     Abstract = {Fluids of hard bent-core molecules have been studied using theory
3718 tim 2999 and computer simulation. The molecules are composed of two hard
3719     spherocylinders, with length-to-breadth ratio L/D, joined by their
3720     ends at an angle 180 degrees - gamma. For L/D = 2 and gamma = 0,10,20
3721     degrees, the simulations show isotropic, nematic, smectic, and solid
3722     phases. For L/D = 2 and gamma = 30 degrees, only isotropic, nematic,
3723     and solid phases are in evidence, which suggests that there is a
3724     nematic-smectic-solid triple point at an angle in the range 20 degrees
3725     < gamma < 30 degrees. In all of the orientationally ordered fluid
3726     phases the order is purely uniaxial. For gamma = 10 degrees and
3727     20 degrees, at the studied densities, the solid is also uniaxially
3728     ordered, whilst for gamma = 30 degrees the solid layers are biaxially
3729     ordered. For L/D = 2 and gamma = 60 degrees and 90 degrees we find
3730     no spontaneous orientational ordering. This is shown to be due to
3731     the interlocking of dimer pairs which precludes alignment. We find
3732     similar results for L/D = 9.5 and gamma = 72 degrees, where an isotropic-biaxial
3733     nematic transition is predicted by Onsager theory. Simulations in
3734     the biaxial nematic phase show it to be at least mechanically stable
3735     with respect to the isotropic phase, however. We have compared the
3736     quasi-exact simulation results in the isotropic phase with the predicted
3737     equations of state from three theories: the virial expansion containing
3738     the second and third virial coefficients; the Parsons-Lee equation
3739     of state; an application of Wertheim's theory of associating fluids
3740     in the limit of infinite attractive association energy. For all
3741     of the molecule elongations and geometries we have simulated, the
3742     Wertheim theory proved to be the most accurate. Interestingly, the
3743     isotropic equation of state is virtually independent of the dimer
3744     bond angle-a feature that is also reflected in the lack of variation
3745     with angle of the calculated second and third virial coefficients.
3746     (C) 1999 American Institute of Physics. [S0021-9606(99)50445-5].},
3747 gezelter 3302 Annote = {255TC Times Cited:24 Cited References Count:38},
3748     Author = {P. J. Camp and M. P. Allen and A. J. Masters},
3749     Issn = {0021-9606},
3750     Journal = {Journal of Chemical Physics},
3751     Month = {Dec 1},
3752     Number = {21},
3753     Pages = {9871-9881},
3754     Title = {Theory and computer simulation of bent-core molecules},
3755     Uri = {<Go to ISI>://000083685400056},
3756     Volume = {111},
3757     Year = {1999}}
3758 tim 2999
3759 gezelter 3302 @article{Care2005,
3760     Abstract = {A review is presented of molecular and mesoscopic computer simulations
3761 tim 2999 of liquid crystalline systems. Molecular simulation approaches applied
3762     to such systems are described, and the key findings for bulk phase
3763     behaviour are reported. Following this, recently developed lattice
3764     Boltzmann approaches to the mesoscale modelling of nemato-dynanics
3765     are reviewed. This paper concludes with a discussion of possible
3766     areas for future development in this field.},
3767 gezelter 3302 Annote = {989TU Times Cited:2 Cited References Count:258},
3768     Author = {C. M. Care and D. J. Cleaver},
3769     Issn = {0034-4885},
3770     Journal = {Reports on Progress in Physics},
3771     Month = {Nov},
3772     Number = {11},
3773     Pages = {2665-2700},
3774     Title = {Computer simulation of liquid crystals},
3775     Uri = {<Go to ISI>://000233697600004},
3776     Volume = {68},
3777     Year = {2005}}
3778 tim 2999
3779 gezelter 3302 @article{Carrasco1999,
3780     Abstract = {The hydrodynamic properties of rigid particles are calculated from
3781 tim 2999 models composed of spherical elements (beads) using theories developed
3782     by Kirkwood, Bloomfield, and their coworkers. Bead models have usually
3783     been built in such a way that the beads fill the volume occupied
3784     by the particles. Sometimes the beads are few and of varying sizes
3785     (bead models in the strict sense), and other times there are many
3786     small beads (filling models). Because hydrodynamic friction takes
3787     place at the molecular surface, another possibility is to use shell
3788     models, as originally proposed by Bloomfield. In this work, we have
3789     developed procedures to build models of the various kinds, and we
3790     describe the theory and methods for calculating their hydrodynamic
3791     properties, including approximate methods that may be needed to
3792     treat models with a very large number of elements. By combining
3793     the various possibilities of model building and hydrodynamic calculation,
3794     several strategies can be designed. We have made a quantitative
3795     comparison of the performance of the various strategies by applying
3796     them to some test cases, for which the properties are known a priori.
3797     We provide guidelines and computational tools for bead modeling.},
3798 gezelter 3302 Annote = {200TT Times Cited:46 Cited References Count:57},
3799     Author = {B. Carrasco and J. G. {de la Torre}},
3800     Issn = {0006-3495},
3801     Journal = {Biophysical Journal},
3802     Month = {Jun},
3803     Number = {6},
3804     Pages = {3044-3057},
3805     Title = {Hydrodynamic properties of rigid particles: Comparison of different modeling and computational procedures},
3806     Uri = {<Go to ISI>://000080556700016},
3807     Volume = {76},
3808     Year = {1999}}
3809 tim 2999
3810 gezelter 3302 @article{Chandra1999,
3811     Abstract = {Dynamical properties of the soft sticky dipole (SSD) model of water
3812 tim 2999 are calculated by means of molecular dynamics simulations. Since
3813     this is not a simple point model, the forces and torques arising
3814     from the SSD potential are derived here. Simulations are carried
3815     out in the microcanonical ensemble employing the Ewald method for
3816     the electrostatic interactions. Various time correlation functions
3817     and dynamical quantities associated with the translational and rotational
3818     motion of water molecules are evaluated and compared with those
3819     of two other commonly used models of liquid water, namely the transferable
3820     intermolecular potential-three points (TIP3P) and simple point charge/extended
3821     (SPC/E) models, and also with experiments. The dynamical properties
3822     of the SSD water model are found to be in good agreement with the
3823     experimental results and appear to be better than the TIP3P and
3824     SPC/E models in most cases, as has been previously shown for its
3825     thermodynamic, structural, and dielectric properties. Also, molecular
3826     dynamics simulations of the SSD model are found to run much faster
3827     than TIP3P, SPC/E, and other multisite models. (C) 1999 American
3828     Institute of Physics. [S0021-9606(99)51430-X].},
3829 gezelter 3302 Annote = {221EN Times Cited:14 Cited References Count:66},
3830     Author = {A. Chandra and T. Ichiye},
3831     Issn = {0021-9606},
3832     Journal = {Journal of Chemical Physics},
3833     Month = {Aug 8},
3834     Number = {6},
3835     Pages = {2701-2709},
3836     Title = {Dynamical properties of the soft sticky dipole model of water: Molecular dynamics simulations},
3837     Uri = {<Go to ISI>://000081711200038},
3838     Volume = {111},
3839     Year = {1999}}
3840 tim 2999
3841 gezelter 3302 @article{Channell1990,
3842     Annote = {Dk631 Times Cited:152 Cited References Count:34},
3843     Author = {P. J. Channell and C. Scovel},
3844     Issn = {0951-7715},
3845     Journal = {Nonlinearity},
3846     Month = {may},
3847     Number = {2},
3848     Pages = {231-259},
3849     Title = {Symplectic Integration of Hamiltonian-Systems},
3850     Uri = {<Go to ISI>://A1990DK63100001},
3851     Volume = {3},
3852     Year = {1990}}
3853 tim 2999
3854 gezelter 3302 @article{Chen2003,
3855     Abstract = {We investigate the asymptotic behavior of systems of nonlinear differential
3856 tim 2999 equations and introduce a family of mixed methods from combinations
3857     of explicit Runge-Kutta methods. These methods have better stability
3858     behavior than traditional Runge-Kutta methods and generally extend
3859     the range of validity of the calculated solutions. These methods
3860     also give a way of determining if the numerical solutions are real
3861     or spurious. Emphasis is put on examples coming from mathematical
3862     models in ecology. (C) 2002 IMACS. Published by Elsevier Science
3863     B.V. All rights reserved.},
3864 gezelter 3302 Annote = {633ZD Times Cited:0 Cited References Count:9},
3865     Author = {B. Chen and F. Solis},
3866     Issn = {0168-9274},
3867     Journal = {Applied Numerical Mathematics},
3868     Month = {Jan},
3869     Number = {1-2},
3870     Pages = {21-30},
3871     Title = {Explicit mixed finite order Runge-Kutta methods},
3872     Uri = {<Go to ISI>://000180314200002},
3873     Volume = {44},
3874     Year = {2003}}
3875 tim 2999
3876 gezelter 3302 @article{Cheung2004,
3877     Abstract = {Equilibrium molecular dynamics calculations have been performed for
3878 tim 2999 the liquid crystal molecule n-4-(trans-4-n-pentylcyclohexyl)benzonitrile
3879     (PCH5) using a fully atomistic model. Simulation data have been
3880     obtained for a series of temperatures in the nematic phase. The
3881     simulation data have been used to calculate the flexoelectric coefficients
3882     e(s) and e(b) using the linear response formalism of Osipov and
3883     Nemtsov [M. A. Osipov and V. B. Nemtsov, Sov. Phys. Crstallogr.
3884     31, 125 (1986)]. The temperature and order parameter dependence
3885     of e(s) and e(b) are examined, as are separate contributions from
3886     different intermolecular interactions. Values of e(s) and e(b) calculated
3887     from simulation are consistent with those found from experiment.
3888     (C) 2004 American Institute of Physics.},
3889 gezelter 3302 Annote = {866UM Times Cited:4 Cited References Count:61},
3890     Author = {D. L. Cheung and S. J. Clark and M. R. Wilson},
3891     Issn = {0021-9606},
3892     Journal = {Journal of Chemical Physics},
3893     Month = {Nov 8},
3894     Number = {18},
3895     Pages = {9131-9139},
3896     Title = {Calculation of flexoelectric coefficients for a nematic liquid crystal by atomistic simulation},
3897     Uri = {<Go to ISI>://000224798900053},
3898     Volume = {121},
3899     Year = {2004}}
3900 tim 2999
3901 gezelter 3302 @article{Cheung2002,
3902     Abstract = {Equilibrium molecular dynamics calculations have been performed for
3903 tim 2999 the liquid crystal molecule n-4-(trans-4-npentylcyclohexyl)benzonitrile
3904     (PCH5) using a fully atomistic model. Simulation data has been obtained
3905     for a series of temperatures in the nematic phase. The rotational
3906     viscosity co-efficient gamma(1), has been calculated using the angular
3907     velocity correlation function of the nematic director, n, the mean
3908     squared diffusion of n and statistical mechanical methods based
3909     on the rotational diffusion co-efficient. We find good agreement
3910     between the first two methods and experimental values. (C) 2002
3911     Published by Elsevier Science B.V.},
3912 gezelter 3302 Annote = {547KF Times Cited:8 Cited References Count:31},
3913     Author = {D. L. Cheung and S. J. Clark and M. R. Wilson},
3914     Issn = {0009-2614},
3915     Journal = {Chemical Physics Letters},
3916     Month = {Apr 15},
3917     Number = {1-2},
3918     Pages = {140-146},
3919     Title = {Calculation of the rotational viscosity of a nematic liquid crystal},
3920     Uri = {<Go to ISI>://000175331000020},
3921     Volume = {356},
3922     Year = {2002}}
3923 tim 2999
3924 gezelter 3302 @article{Chin2004,
3925     Abstract = {Current molecular dynamics simulations of biomolecules using multiple
3926 tim 2999 time steps to update the slowly changing force are hampered by instabilities
3927     beginning at time steps near the half period of the fastest vibrating
3928     mode. These #resonance# instabilities have became a critical barrier
3929     preventing the long time simulation of biomolecular dynamics. Attempts
3930     to tame these instabilities by altering the slowly changing force
3931     and efforts to damp them out by Langevin dynamics do not address
3932     the fundamental cause of these instabilities. In this work, we trace
3933     the instability to the nonanalytic character of the underlying spectrum
3934     and show that a correct splitting of the Hamiltonian, which renders
3935     the spectrum analytic, restores stability. The resulting Hamiltonian
3936     dictates that in addition to updating the momentum due to the slowly
3937     changing force, one must also update the position with a modified
3938     mass. Thus multiple-time stepping must be done dynamically. (C)
3939     2004 American Institute of Physics.},
3940 gezelter 3302 Annote = {757TK Times Cited:1 Cited References Count:22},
3941     Author = {S. A. Chin},
3942     Issn = {0021-9606},
3943     Journal = {Journal of Chemical Physics},
3944     Month = {Jan 1},
3945     Number = {1},
3946     Pages = {8-13},
3947     Title = {Dynamical multiple-time stepping methods for overcoming resonance instabilities},
3948     Uri = {<Go to ISI>://000187577400003},
3949     Volume = {120},
3950     Year = {2004}}
3951 tim 2746
3952 gezelter 3302 @article{Cook2000,
3953     Abstract = {The Kirkwood correlation factor g(1) determines the preference for
3954 tim 2999 local parallel or antiparallel dipole association in the isotropic
3955     phase. Calamitic mesogens with longitudinal dipole moments and Kirkwood
3956     factors greater than 1 have an enhanced effective dipole moment
3957     along the molecular long axis. This leads to higher values of Delta
3958     epsilon in the nematic phase. This paper describes state-of-the-art
3959     molecular dynamics simulations of two calamitic mesogens 4-(trans-4-n-pentylcyclohexyl)benzonitrile
3960     (PCH5) and 4-(trans-4-n-pentylcyclohexyl) chlorobenzene (PCH5-Cl)
3961     in the isotropic liquid phase using an all-atom force field and
3962     taking long range electrostatics into account using an Ewald summation.
3963     Using this methodology, PCH5 is seen to prefer antiparallel dipole
3964     alignment with a negative g(1) and PCH5-Cl is seen to prefer parallel
3965     dipole alignment with a positive g(1); this is in accordance with
3966     experimental dielectric measurements. Analysis of the molecular
3967     dynamics trajectories allows an assessment of why these molecules
3968     behave differently.},
3969 gezelter 3302 Annote = {376BF Times Cited:10 Cited References Count:16},
3970     Author = {M. J. Cook and M. R. Wilson},
3971     Issn = {0267-8292},
3972     Journal = {Liquid Crystals},
3973     Month = {Dec},
3974     Number = {12},
3975     Pages = {1573-1583},
3976     Title = {Simulation studies of dipole correlation in the isotropic liquid phase},
3977     Uri = {<Go to ISI>://000165437800002},
3978     Volume = {27},
3979     Year = {2000}}
3980 tim 2999
3981 gezelter 3302 @article{Cui2003,
3982     Abstract = {All-atom Langevin dynamics simulations have been performed to study
3983 tim 2999 the folding pathways of the 18-residue binding domain fragment E6ap
3984     of the human papillomavirus E6 interacting peptide. Six independent
3985     folding trajectories, with a total duration of nearly 2 mus, all
3986     lead to the same native state in which the E6ap adopts a fluctuating
3987     a-helix structure in the central portion (Ser-4-Leu-13) but with
3988     very flexible N and C termini. Simulations starting from different
3989     core configurations exhibit the E6ap folding dynamics as either
3990     a two- or three-state folder with an intermediate misfolded state.
3991     The essential leucine hydrophobic core (Leu-9, Leu-12, and Leu-13)
3992     is well conserved in the native-state structure but absent in the
3993     intermediate structure, suggesting that the leucine core is not
3994     only essential for the binding activity of E6ap but also important
3995     for the stability of the native structure. The free energy landscape
3996     reveals a significant barrier between the basins separating the
3997     native and misfolded states. We also discuss the various underlying
3998     forces that drive the peptide into its native state.},
3999 gezelter 3302 Annote = {689LC Times Cited:3 Cited References Count:48},
4000     Author = {B. X. Cui and M. Y. Shen and K. F. Freed},
4001     Issn = {0027-8424},
4002     Journal = {Proceedings of the National Academy of Sciences of the United States of America},
4003     Month = {Jun 10},
4004     Number = {12},
4005     Pages = {7087-7092},
4006     Title = {Folding and misfolding of the papillomavirus E6 interacting peptide E6ap},
4007     Uri = {<Go to ISI>://000183493500037},
4008     Volume = {100},
4009     Year = {2003}}
4010 tim 2746
4011 gezelter 3302 @article{Denisov2003,
4012     Abstract = {We study the slow phase of thermally activated magnetic relaxation
4013 tim 2999 in finite two-dimensional ensembles of dipolar interacting ferromagnetic
4014     nanoparticles whose easy axes of magnetization are perpendicular
4015     to the distribution plane. We develop a method to numerically simulate
4016     the magnetic relaxation for the case that the smallest heights of
4017     the potential barriers between the equilibrium directions of the
4018     nanoparticle magnetic moments are much larger than the thermal energy.
4019     Within this framework, we analyze in detail the role that the correlations
4020     of the nanoparticle magnetic moments and the finite size of the
4021     nanoparticle ensemble play in magnetic relaxation.},
4022 gezelter 3302 Annote = {642XH Times Cited:11 Cited References Count:31},
4023     Author = {S. I. Denisov and T. V. Lyutyy and K. N. Trohidou},
4024     Issn = {1098-0121},
4025     Journal = {Physical Review B},
4026     Month = {Jan 1},
4027     Number = {1},
4028     Pages = {-},
4029     Title = {Magnetic relaxation in finite two-dimensional nanoparticle ensembles},
4030     Uri = {<Go to ISI>://000180830400056},
4031     Volume = {67},
4032     Year = {2003}}
4033 tim 2746
4034 gezelter 3302 @article{Derreumaux1998,
4035     Abstract = {To explore the origin of the large-scale motion of triosephosphate
4036 tim 2999 isomerase's flexible loop (residues 166 to 176) at the active site,
4037     several simulation protocols are employed both for the free enzyme
4038     in vacuo and for the free enzyme with some solvent modeling: high-temperature
4039     Langevin dynamics simulations, sampling by a #dynamics##driver#
4040     approach, and potential-energy surface calculations. Our focus is
4041     on obtaining the energy barrier to the enzyme's motion and establishing
4042     the nature of the loop movement. Previous calculations did not determine
4043     this energy barrier and the effect of solvent on the barrier. High-temperature
4044     molecular dynamics simulations and crystallographic studies have
4045     suggested a rigid-body motion with two hinges located at both ends
4046     of the loop; Brownian dynamics simulations at room temperature pointed
4047     to a very flexible behavior. The present simulations and analyses
4048     reveal that although solute/solvent hydrogen bonds play a crucial
4049     role in lowering the energy along the pathway, there still remains
4050     a high activation barrier, This finding clearly indicates that,
4051     if the loop opens and closes in the absence of a substrate at standard
4052     conditions (e.g., room temperature, appropriate concentration of
4053     isomerase), the time scale for transition is not in the nanosecond
4054     but rather the microsecond range. Our results also indicate that
4055     in the context of spontaneous opening in the free enzyme, the motion
4056     is of rigid-body type and that the specific interaction between
4057     residues Ala(176) and Tyr(208) plays a crucial role in the loop
4058     opening/closing mechanism.},
4059 gezelter 3302 Annote = {Zl046 Times Cited:30 Cited References Count:29},
4060     Author = {P. Derreumaux and T. Schlick},
4061     Issn = {0006-3495},
4062     Journal = {Biophysical Journal},
4063     Month = {Jan},
4064     Number = {1},
4065     Pages = {72-81},
4066     Title = {The loop opening/closing motion of the enzyme triosephosphate isomerase},
4067     Uri = {<Go to ISI>://000073393400009},
4068     Volume = {74},
4069     Year = {1998}}
4070 tim 2746
4071 gezelter 3302 @article{Dullweber1997,
4072     Abstract = {Rigid body molecular models possess symplectic structure and time-reversal
4073 tim 2999 symmetry. Standard numerical integration methods destroy both properties,
4074     introducing nonphysical dynamical behavior such as numerically induced
4075     dissipative states and drift in the energy during long term simulations.
4076     This article describes the construction, implementation, and practical
4077     application of fast explicit symplectic-reversible integrators for
4078     multiple rigid body molecular simulations, These methods use a reduction
4079     to Euler equations for the free rigid body, together with a symplectic
4080     splitting technique. In every time step, the orientational dynamics
4081     of each rigid body is integrated by a sequence of planar rotations.
4082     Besides preserving the symplectic and reversible structures of the
4083     flow, this scheme accurately conserves the total angular momentum
4084     of a system of interacting rigid bodies. Excellent energy conservation
4085     fan be obtained relative to traditional methods, especially in long-time
4086     simulations. The method is implemented in a research code, ORIENT
4087     and compared with a quaternion/extrapolation scheme for the TIP4P
4088     model of water. Our experiments show that the symplectic-reversible
4089     scheme is far superior to the more traditional quaternion method.
4090     (C) 1997 American Institute of Physics.},
4091 gezelter 3302 Annote = {Ya587 Times Cited:35 Cited References Count:32},
4092     Author = {A. Dullweber and B. Leimkuhler and R. McLachlan},
4093     Issn = {0021-9606},
4094     Journal = {Journal of Chemical Physics},
4095     Month = {Oct 15},
4096     Number = {15},
4097     Pages = {5840-5851},
4098     Title = {Symplectic splitting methods for rigid body molecular dynamics},
4099     Uri = {<Go to ISI>://A1997YA58700024},
4100     Volume = {107},
4101     Year = {1997}}
4102 tim 2999
4103 gezelter 3302 @book{Gamma1994,
4104     Address = {London},
4105     Author = {E. Gamma, R. Helm, R. Johnson and J. Vlissides},
4106     Chapter = {7},
4107     Publisher = {Perason Education},
4108     Title = {Design Patterns: Elements of Reusable Object-Oriented Software},
4109     Year = {1994}}
4110 tim 2999
4111 gezelter 3302 @article{Edwards2005,
4112     Abstract = {Using the Langevin dynamics technique, we have carried out simulations
4113 tim 2999 of a single-chain flexible diblock copolymer. The polymer consists
4114     of two blocks of equal length, one very poorly solvated and the
4115     other close to theta-conditions. We study what happens when such
4116     a polymer is stretched, for a range of different stretching speeds,
4117     and correlate our observations with features in the plot of force
4118     vs extension. We find that at slow speeds this force profile does
4119     not increase monotonically, in disagreement with earlier predictions,
4120     and that at high speeds there is a strong dependence on which end
4121     of the polymer is pulled, as well as a high level of hysteresis.},
4122 gezelter 3302 Annote = {992EC Times Cited:0 Cited References Count:13},
4123     Author = {S. A. Edwards and D. R. M. Williams},
4124     Issn = {0024-9297},
4125     Journal = {Macromolecules},
4126     Month = {Dec 13},
4127     Number = {25},
4128     Pages = {10590-10595},
4129     Title = {Stretching a single diblock copolymer in a selective solvent: Langevin dynamics simulations},
4130     Uri = {<Go to ISI>://000233866200035},
4131     Volume = {38},
4132     Year = {2005}}
4133 tim 2746
4134 gezelter 3302 @article{Egberts1988,
4135     Annote = {Q0188 Times Cited:219 Cited References Count:43},
4136     Author = {E. Egberts and H. J. C. Berendsen},
4137     Issn = {0021-9606},
4138     Journal = {Journal of Chemical Physics},
4139     Month = {Sep 15},
4140     Number = {6},
4141     Pages = {3718-3732},
4142     Title = {Molecular-Dynamics Simulation of a Smectic Liquid-Crystal with Atomic Detail},
4143     Uri = {<Go to ISI>://A1988Q018800036},
4144     Volume = {89},
4145     Year = {1988}}
4146 tim 2999
4147 gezelter 3302 @article{Ermak1978,
4148     Annote = {Fp216 Times Cited:785 Cited References Count:42},
4149     Author = {D. L. Ermak and J. A. Mccammon},
4150     Issn = {0021-9606},
4151     Journal = {Journal of Chemical Physics},
4152     Number = {4},
4153     Pages = {1352-1360},
4154     Title = {Brownian Dynamics with Hydrodynamic Interactions},
4155     Uri = {<Go to ISI>://A1978FP21600004},
4156     Volume = {69},
4157     Year = {1978}}
4158 tim 2746
4159 gezelter 3302 @article{Evans1977,
4160     Annote = {Ds757 Times Cited:271 Cited References Count:18},
4161     Author = {D. J. Evans},
4162     Issn = {0026-8976},
4163     Journal = {Molecular Physics},
4164     Number = {2},
4165     Pages = {317-325},
4166     Title = {Representation of Orientation Space},
4167     Uri = {<Go to ISI>://A1977DS75700002},
4168     Volume = {34},
4169     Year = {1977}}
4170 tim 2999
4171 gezelter 3302 @article{Fennell2004,
4172     Abstract = {The density maximum and temperature dependence of the self-diffusion
4173 tim 2999 constant were investigated for the soft sticky dipole (SSD) water
4174     model and two related reparametrizations of this single-point model.
4175     A combination of microcanonical and isobaric-isothermal molecular
4176     dynamics simulations was used to calculate these properties, both
4177     with and without the use of reaction field to handle long-range
4178     electrostatics. The isobaric-isothermal simulations of the melting
4179     of both ice-I-h and ice-I-c showed a density maximum near 260 K.
4180     In most cases, the use of the reaction field resulted in calculated
4181     densities which were significantly lower than experimental densities.
4182     Analysis of self-diffusion constants shows that the original SSD
4183     model captures the transport properties of experimental water very
4184     well in both the normal and supercooled liquid regimes. We also
4185     present our reparametrized versions of SSD for use both with the
4186     reaction field or without any long-range electrostatic corrections.
4187     These are called the SSD/RF and SSD/E models, respectively. These
4188     modified models were shown to maintain or improve upon the experimental
4189     agreement with the structural and transport properties that can
4190     be obtained with either the original SSD or the density-corrected
4191     version of the original model (SSD1). Additionally, a novel low-density
4192     ice structure is presented which appears to be the most stable ice
4193     structure for the entire SSD family. (C) 2004 American Institute
4194     of Physics.},
4195 gezelter 3302 Annote = {816YY Times Cited:5 Cited References Count:39},
4196     Author = {C. J. Fennell and J. D. Gezelter},
4197     Issn = {0021-9606},
4198     Journal = {Journal of Chemical Physics},
4199     Month = {May 15},
4200     Number = {19},
4201     Pages = {9175-9184},
4202     Title = {On the structural and transport properties of the soft sticky dipole and related single-point water models},
4203     Uri = {<Go to ISI>://000221146400032},
4204     Volume = {120},
4205     Year = {2004}}
4206 tim 2999
4207 gezelter 3302 @article{Fernandes2002,
4208     Abstract = {We have developed a Brownian dynamics simulation algorithm to generate
4209 tim 2999 Brownian trajectories of an isolated, rigid particle of arbitrary
4210     shape in the presence of electric fields or any other external agents.
4211     Starting from the generalized diffusion tensor, which can be calculated
4212     with the existing HYDRO software, the new program BROWNRIG (including
4213     a case-specific subprogram for the external agent) carries out a
4214     simulation that is analyzed later to extract the observable dynamic
4215     properties. We provide a variety of examples of utilization of this
4216     method, which serve as tests of its performance, and also illustrate
4217     its applicability. Examples include free diffusion, transport in
4218     an electric field, and diffusion in a restricting environment.},
4219 gezelter 3302 Annote = {633AD Times Cited:2 Cited References Count:43},
4220     Author = {M. X. Fernandes and J. G. {de la Torre}},
4221     Issn = {0006-3495},
4222     Journal = {Biophysical Journal},
4223     Month = {Dec},
4224     Number = {6},
4225     Pages = {3039-3048},
4226     Title = {Brownian dynamics simulation of rigid particles of arbitrary shape in external fields},
4227     Uri = {<Go to ISI>://000180256300012},
4228     Volume = {83},
4229     Year = {2002}}
4230 tim 2746
4231 gezelter 3302 @book{Frenkel1996,
4232     Address = {New York},
4233     Author = {D. Frenkel and B. Smit},
4234     Publisher = {Academic Press},
4235     Title = {Understanding Molecular Simulation : From Algorithms to Applications},
4236     Year = {1996}}
4237 tim 2999
4238 gezelter 3302 @article{Gay1981,
4239     Annote = {Lj347 Times Cited:482 Cited References Count:13},
4240     Author = {J. G. Gay and B. J. Berne},
4241     Issn = {0021-9606},
4242     Journal = {Journal of Chemical Physics},
4243     Number = {6},
4244     Pages = {3316-3319},
4245     Title = {Modification of the Overlap Potential to Mimic a Linear Site-Site Potential},
4246     Uri = {<Go to ISI>://A1981LJ34700029},
4247     Volume = {74},
4248     Year = {1981}}
4249 tim 2999
4250 gezelter 3302 @article{Gelin1999,
4251     Abstract = {To investigate the influence of inertial effects on the dynamics of
4252 tim 2999 an assembly of beads subjected to rigid constraints and placed in
4253     a buffer medium, a convenient method to introduce suitable generalized
4254     coordinates is presented. Without any restriction on the nature
4255     of the soft forces involved (both stochastic and deterministic),
4256     pertinent Langevin equations are derived. Provided that the Brownian
4257     forces are Gaussian and Markovian, the corresponding Fokker-Planck
4258     equation (FPE) is obtained in the complete phase space of generalized
4259     coordinates and momenta. The correct short time behavior for correlation
4260     functions (CFs) of generalized coordinates is established, and the
4261     diffusion equation with memory (DEM) is deduced from the FPE in
4262     the high friction Limit. The DEM is invoked to perform illustrative
4263     calculations in two dimensions of the orientational CFs for once
4264     broken nonrigid rods immobilized on a surface. These calculations
4265     reveal that the CFs under certain conditions exhibit an oscillatory
4266     behavior, which is irreproducible within the standard diffusion
4267     equation. Several methods are considered for the approximate solution
4268     of the DEM, and their application to three dimensional DEMs is discussed.},
4269 gezelter 3302 Annote = {257MM Times Cited:2 Cited References Count:82},
4270     Author = {M. F. Gelin},
4271     Issn = {1022-1344},
4272     Journal = {Macromolecular Theory and Simulations},
4273     Month = {Nov},
4274     Number = {6},
4275     Pages = {529-543},
4276     Title = {Inertial effects in the Brownian dynamics with rigid constraints},
4277     Uri = {<Go to ISI>://000083785700002},
4278     Volume = {8},
4279     Year = {1999}}
4280 tim 2746
4281 gezelter 3302 @article{Goetz1998,
4282     Author = {R. Goetz and R. Lipowsky},
4283     Journal = {Journal of Chemical Physics},
4284     Number = {17},
4285     Pages = {7397},
4286     Title = {Computer simulations of bilayer membranes: Self-assembly and interfacial tension},
4287     Volume = {108},
4288     Year = {1998}}
4289 tim 2999
4290 gezelter 3302 @book{Goldstein2001,
4291     Address = {San Francisco},
4292     Author = {H. Goldstein and C. Poole and J. Safko},
4293     Edition = {3rd},
4294     Publisher = {Addison Wesley},
4295     Title = {Classical Mechanics},
4296     Year = {2001}}
4297 tim 2999
4298 gezelter 3302 @article{Gray2003,
4299     Abstract = {Protein-protein docking algorithms provide a means to elucidate structural
4300 tim 2999 details for presently unknown complexes. Here, we present and evaluate
4301     a new method to predict protein-protein complexes from the coordinates
4302     of the unbound monomer components. The method employs a low-resolution,
4303     rigid-body, Monte Carlo search followed by simultaneous optimization
4304     of backbone displacement and side-chain conformations using Monte
4305     Carlo minimization. Up to 10(5) independent simulations are carried
4306     out, and the resulting #decoys# are ranked using an energy function
4307     dominated by van der Waals interactions, an implicit solvation model,
4308     and an orientation-dependent hydrogen bonding potential. Top-ranking
4309     decoys are clustered to select the final predictions. Small-perturbation
4310     studies reveal the formation of binding funnels in 42 of 54 cases
4311     using coordinates derived from the bound complexes and in 32 of
4312     54 cases using independently determined coordinates of one or both
4313     monomers. Experimental binding affinities correlate with the calculated
4314     score function and explain the predictive success or failure of
4315     many targets. Global searches using one or both unbound components
4316     predict at least 25% of the native residue-residue contacts in 28
4317     of the 32 cases where binding funnels exist. The results suggest
4318     that the method may soon be useful for generating models of biologically
4319     important complexes from the structures of the isolated components,
4320     but they also highlight the challenges that must be met to achieve
4321     consistent and accurate prediction of protein-protein interactions.
4322     (C) 2003 Elsevier Ltd. All rights reserved.},
4323 gezelter 3302 Annote = {704QL Times Cited:48 Cited References Count:60},
4324     Author = {J. J. Gray and S. Moughon and C. Wang and O. Schueler-Furman and B. Kuhlman and C. A. Rohl and D. Baker},
4325     Issn = {0022-2836},
4326     Journal = {Journal of Molecular Biology},
4327     Month = {Aug 1},
4328     Number = {1},
4329     Pages = {281-299},
4330     Title = {Protein-protein docking with simultaneous optimization of rigid-body displacement and side-chain conformations},
4331     Uri = {<Go to ISI>://000184351300022},
4332     Volume = {331},
4333     Year = {2003}}
4334 tim 2746
4335 gezelter 3302 @article{Greengard1994,
4336     Abstract = {Some of the recently developed fast summation methods that have arisen
4337 tim 2999 in scientific computing are described. These methods require an
4338     amount of work proportional to N or N log N to evaluate all pairwise
4339     interactions in an ensemble of N particles. Traditional methods,
4340     by contrast, require an amount of work proportional to N-2. AS a
4341     result, large-scale simulations can be carried out using only modest
4342     computer resources. In combination with supercomputers, it is possible
4343     to address questions that were previously out of reach. Problems
4344     from diffusion, gravitation, and wave propagation are considered.},
4345 gezelter 3302 Annote = {Pb499 Times Cited:99 Cited References Count:44},
4346     Author = {L. Greengard},
4347     Issn = {0036-8075},
4348     Journal = {Science},
4349     Month = {Aug 12},
4350     Number = {5174},
4351     Pages = {909-914},
4352     Title = {Fast Algorithms for Classical Physics},
4353     Uri = {<Go to ISI>://A1994PB49900031},
4354     Volume = {265},
4355     Year = {1994}}
4356 tim 2999
4357 gezelter 3302 @article{Greengard1987,
4358     Annote = {L0498 Times Cited:899 Cited References Count:7},
4359     Author = {L. Greengard and V. Rokhlin},
4360     Issn = {0021-9991},
4361     Journal = {Journal of Computational Physics},
4362     Month = {Dec},
4363     Number = {2},
4364     Pages = {325-348},
4365     Title = {A Fast Algorithm for Particle Simulations},
4366     Uri = {<Go to ISI>://A1987L049800006},
4367     Volume = {73},
4368     Year = {1987}}
4369 tim 2999
4370 gezelter 3302 @article{Hairer1997,
4371     Abstract = {Backward error analysis is a useful tool for the study of numerical
4372 tim 2999 approximations to ordinary differential equations. The numerical
4373     solution is formally interpreted as the exact solution of a perturbed
4374     differential equation, given as a formal and usually divergent series
4375     in powers of the step size. For a rigorous analysis, this series
4376     has to be truncated. In this article we study the influence of this
4377     truncation to the difference between the numerical solution and
4378     the exact solution of the perturbed differential equation. Results
4379     on the long-time behaviour of numerical solutions are obtained in
4380     this way. We present applications to the numerical phase portrait
4381     near hyperbolic equilibrium points, to asymptotically stable periodic
4382     orbits and Hopf bifurcation, and to energy conservation and approximation
4383     of invariant tori in Hamiltonian systems.},
4384 gezelter 3302 Annote = {Xj488 Times Cited:50 Cited References Count:19},
4385     Author = {E. Hairer and C. Lubich},
4386     Issn = {0029-599X},
4387     Journal = {Numerische Mathematik},
4388     Month = {Jun},
4389     Number = {4},
4390     Pages = {441-462},
4391     Title = {The life-span of backward error analysis for numerical integrators},
4392     Uri = {<Go to ISI>://A1997XJ48800002},
4393     Volume = {76},
4394     Year = {1997}}
4395 tim 2999
4396 gezelter 3302 @article{Hao1993,
4397     Abstract = {A new procedure for studying the folding and unfolding of proteins,
4398 tim 2999 with an application to bovine pancreatic trypsin inhibitor (BPTI),
4399     is reported. The unfolding and refolding of the native structure
4400     of the protein are characterized by the dimensions of the protein,
4401     expressed in terms of the three principal radii of the structure
4402     considered as an ellipsoid. A dynamic equation, describing the variations
4403     of the principal radii on the unfolding path, and a numerical procedure
4404     to solve this equation are proposed. Expanded and distorted conformations
4405     are refolded to the native structure by a dimensional-constraint
4406     energy minimization procedure. A unique and reproducible unfolding
4407     pathway for an intermediate of BPTI lacking the [30,51] disulfide
4408     bond is obtained. The resulting unfolded conformations are extended;
4409     they contain near-native local structure, but their longest principal
4410     radii are more than 2.5 times greater than that of the native structure.
4411     The most interesting finding is that the majority of expanded conformations,
4412     generated under various conditions, can be refolded closely to the
4413     native structure, as measured by the correct overall chain fold,
4414     by the rms deviations from the native structure of only 1.9-3.1
4415     angstrom, and by the energy differences of about 10 kcal/mol from
4416     the native structure. Introduction of the [30,51] disulfide bond
4417     at this stage, followed by minimization, improves the closeness
4418     of the refolded structures to the native structure, reducing the
4419     rms deviations to 0.9-2.0 angstrom. The unique refolding of these
4420     expanded structures over such a large conformational space implies
4421     that the folding is strongly dictated by the interactions in the
4422     amino acid sequence of BPTI. The simulations indicate that, under
4423     conditions that favor a compact structure as mimicked by the volume
4424     constraints in our algorithm; the expanded conformations have a
4425     strong tendency to move toward the native structure; therefore,
4426     they probably would be favorable folding intermediates. The results
4427     presented here support a general model for protein folding, i.e.,
4428     progressive formation of partially folded structural units, followed
4429     by collapse to the compact native structure. The general applicability
4430     of the procedure is also discussed.},
4431 gezelter 3302 Annote = {Ly294 Times Cited:27 Cited References Count:57},
4432     Author = {M. H. Hao and M. R. Pincus and S. Rackovsky and H. A. Scheraga},
4433     Issn = {0006-2960},
4434     Journal = {Biochemistry},
4435     Month = {Sep 21},
4436     Number = {37},
4437     Pages = {9614-9631},
4438     Title = {Unfolding and Refolding of the Native Structure of Bovine Pancreatic Trypsin-Inhibitor Studied by Computer-Simulations},
4439     Uri = {<Go to ISI>://A1993LY29400014},
4440     Volume = {32},
4441     Year = {1993}}
4442 tim 2746
4443 gezelter 3302 @article{Hinsen2000,
4444     Abstract = {The slow dynamics of proteins around its native folded state is usually
4445 tim 2999 described by diffusion in a strongly anharmonic potential. In this
4446     paper, we try to understand the form and origin of the anharmonicities,
4447     with the principal aim of gaining a better understanding of the
4448     principal motion types, but also in order to develop more efficient
4449     numerical methods for simulating neutron scattering spectra of large
4450     proteins. First, we decompose a molecular dynamics (MD) trajectory
4451     of 1.5 ns for a C-phycocyanin dimer surrounded by a layer of water
4452     into three contributions that we expect to be independent: the global
4453     motion of the residues, the rigid-body motion of the sidechains
4454     relative to the backbone, and the internal deformations of the sidechains.
4455     We show that they are indeed almost independent by verifying the
4456     factorization of the incoherent intermediate scattering function.
4457     Then, we show that the global residue motions, which include all
4458     large-scale backbone motions, can be reproduced by a simple harmonic
4459     model which contains two contributions: a short-time vibrational
4460     term, described by a standard normal mode calculation in a local
4461     minimum, and a long-time diffusive term, described by Brownian motion
4462     in an effective harmonic potential. The potential and the friction
4463     constants were fitted to the MD data. The major anharmonic contribution
4464     to the incoherent intermediate scattering function comes from the
4465     rigid-body diffusion of the sidechains. This model can be used to
4466     calculate scattering functions for large proteins and for long-time
4467     scales very efficiently, and thus provides a useful complement to
4468     MD simulations, which are best suited for detailed studies on smaller
4469     systems or for shorter time scales. (C) 2000 Elsevier Science B.V.
4470     All rights reserved.},
4471 gezelter 3302 Annote = {Sp. Iss. SI 368MT Times Cited:16 Cited References Count:31},
4472     Author = {K. Hinsen and A. J. Petrescu and S. Dellerue and M. C. Bellissent-Funel and G. R. Kneller},
4473     Issn = {0301-0104},
4474     Journal = {Chemical Physics},
4475     Month = {Nov 1},
4476     Number = {1-2},
4477     Pages = {25-37},
4478     Title = {Harmonicity in slow protein dynamics},
4479     Uri = {<Go to ISI>://000090121700003},
4480     Volume = {261},
4481     Year = {2000}}
4482 tim 2746
4483 gezelter 3302 @article{Ho1992,
4484     Abstract = {Evidence has been found for the existence water at the protein-lipid
4485 tim 2999 hydrophobic interface ot the membrane proteins, gramicidin and apocytochrome
4486     C, using two related fluorescence spectroscopic approaches. The
4487     first approach exploited the fact that the presence of water in
4488     the excited state solvent cage of a fluorophore increases the rate
4489     of decay. For 1,6-diphenyl-1,3,5-hexatriene (DPH) and 1-palmitoyl-2-[[2-[4-(6-phenyl-trans-1,3,5-hexatrienyl)
4490     phenyl]ethyl]carbonyl]-3-sn-PC (DPH-PC), where the fluorophores
4491     are located in the hydrophobic core of the lipid bilayer, the introduction
4492     of gramicidin reduced the fluorescence lifetime, indicative of an
4493     increased presence of water in the bilayer. Since a high protein:lipid
4494     ratio was used, the fluorophores were forced to be adjacent to the
4495     protein hydrophobic surface, hence the presence of water in this
4496     region could be inferred. Cholesterol is known to reduce the water
4497     content of lipid bilayers and this effect was maintained at the
4498     protein-lipid interface with both gramicidin and apocytochrome C,
4499     again suggesting hydration in this region. The second approach was
4500     to use the fluorescence enhancement induced by exchanging deuterium
4501     oxide (D2O) for H2O. Both the fluorescence intensities of trimethylammonium-DPH,
4502     located in the lipid head group region, and of the gramicidin intrinsic
4503     tryptophans were greater in a D2O buffer compared with H2O, showing
4504     that the fluorophores were exposed to water in the bilayer at the
4505     protein-lipid interface. In the presence of cholesterol the fluorescence
4506     intensity ratio of D2O to H2O decreased, indicating a removal of
4507     water by the cholesterol, in keeping with the lifetime data. Altered
4508     hydration at the protein-lipid interface could affect conformation,
4509     thereby offering a new route by which membrane protein functioning
4510     may be modified.},
4511 gezelter 3302 Annote = {Ju251 Times Cited:55 Cited References Count:44},
4512     Author = {C. Ho and C. D. Stubbs},
4513     Issn = {0006-3495},
4514     Journal = {Biophysical Journal},
4515     Month = {Oct},
4516     Number = {4},
4517     Pages = {897-902},
4518     Title = {Hydration at the Membrane Protein-Lipid Interface},
4519     Uri = {<Go to ISI>://A1992JU25100002},
4520     Volume = {63},
4521     Year = {1992}}
4522 tim 2999
4523 gezelter 3302 @book{Hockney1981,
4524     Address = {New York},
4525     Author = {R.W. Hockney and J.W. Eastwood},
4526     Publisher = {McGraw-Hill},
4527     Title = {Computer Simulation Using Particles},
4528     Year = {1981}}
4529 tim 2999
4530 gezelter 3302 @article{Hoover1985,
4531     Annote = {Acr30 Times Cited:1809 Cited References Count:11},
4532     Author = {W. G. Hoover},
4533     Issn = {1050-2947},
4534     Journal = {Physical Review A},
4535     Number = {3},
4536     Pages = {1695-1697},
4537     Title = {Canonical Dynamics - Equilibrium Phase-Space Distributions},
4538     Uri = {<Go to ISI>://A1985ACR3000056},
4539     Volume = {31},
4540     Year = {1985}}
4541 tim 2999
4542 gezelter 3302 @article{Huh2004,
4543     Abstract = {Racemic fluids of chiral calamitic molecules are investigated with
4544 tim 2999 molecular dynamics simulations. In particular, the phase behavior
4545     as a function of density is examined for eight racemates. The relationship
4546     between chiral discrimination and orientational order in the phase
4547     is explored. We find that the transition from the isotropic phase
4548     to a liquid crystal phase is accompanied by an increase in chiral
4549     discrimination, as measured by differences in radial distributions.
4550     Among ordered phases, discrimination is largest for smectic phases
4551     with a significant preference for heterochiral contact within the
4552     layers. (C) 2004 American Institute of Physics.},
4553 gezelter 3302 Annote = {870FJ Times Cited:0 Cited References Count:63},
4554     Author = {Y. Huh and N. M. Cann},
4555     Issn = {0021-9606},
4556     Journal = {Journal of Chemical Physics},
4557     Month = {Nov 22},
4558     Number = {20},
4559     Pages = {10299-10308},
4560     Title = {Discrimination in isotropic, nematic, and smectic phases of chiral calamitic molecules: A computer simulation study},
4561     Uri = {<Go to ISI>://000225042700059},
4562     Volume = {121},
4563     Year = {2004}}
4564 tim 2999
4565 gezelter 3302 @article{Humphrey1996,
4566     Abstract = {VMD is a molecular graphics program designed for the display and analysis
4567 tim 2999 of molecular assemblies, in particular biopolymers such as proteins
4568     and nucleic acids. VMD can simultaneously display any number of
4569     structures using a wide variety of rendering styles and coloring
4570     methods. Molecules are displayed as one or more ''representations,''
4571     in which each representation embodies a particular rendering method
4572     and coloring scheme for a selected subset of atoms. The atoms displayed
4573     in each representation are chosen using an extensive atom selection
4574     syntax, which includes Boolean operators and regular expressions.
4575     VMD provides a complete graphical user interface for program control,
4576     as well as a text interface using the Tcl embeddable parser to allow
4577     for complex scripts with variable substitution, control loops, and
4578     function calls. Full session logging is supported, which produces
4579     a VMD command script for later playback. High-resolution raster
4580     images of displayed molecules may be produced by generating input
4581     scripts for use by a number of photorealistic image-rendering applications.
4582     VMD has also been expressly designed with the ability to animate
4583     molecular dynamics (MD) simulation trajectories, imported either
4584     from files or from a direct connection to a running MD simulation.
4585     VMD is the visualization component of MDScope, a set of tools for
4586     interactive problem solving in structural biology, which also includes
4587     the parallel MD program NAMD, and the MDCOMM software used to connect
4588     the visualization and simulation programs. VMD is written in C++,
4589     using an object-oriented design; the program, including source code
4590     and extensive documentation, is freely available via anonymous ftp
4591     and through the World Wide Web.},
4592 gezelter 3302 Annote = {Uh515 Times Cited:1418 Cited References Count:19},
4593     Author = {W. Humphrey and A. Dalke and K. Schulten},
4594     Issn = {0263-7855},
4595     Journal = {Journal of Molecular Graphics},
4596     Month = {Feb},
4597     Number = {1},
4598     Pages = {33-\&},
4599     Title = {VMD: Visual molecular dynamics},
4600     Uri = {<Go to ISI>://A1996UH51500005},
4601     Volume = {14},
4602     Year = {1996}}
4603 tim 2999
4604 gezelter 3302 @article{Izaguirre2001,
4605     Abstract = {In this paper we show the possibility of using very mild stochastic
4606 tim 2999 damping to stabilize long time step integrators for Newtonian molecular
4607     dynamics. More specifically, stable and accurate integrations are
4608     obtained for damping coefficients that are only a few percent of
4609     the natural decay rate of processes of interest, such as the velocity
4610     autocorrelation function. Two new multiple time stepping integrators,
4611     Langevin Molly (LM) and Brunger-Brooks-Karplus-Molly (BBK-M), are
4612     introduced in this paper. Both use the mollified impulse method
4613     for the Newtonian term. LM uses a discretization of the Langevin
4614     equation that is exact for the constant force, and BBK-M uses the
4615     popular Brunger-Brooks-Karplus integrator (BBK). These integrators,
4616     along with an extrapolative method called LN, are evaluated across
4617     a wide range of damping coefficient values. When large damping coefficients
4618     are used, as one would for the implicit modeling of solvent molecules,
4619     the method LN is superior, with LM closely following. However, with
4620     mild damping of 0.2 ps(-1), LM produces the best results, allowing
4621     long time steps of 14 fs in simulations containing explicitly modeled
4622     flexible water. With BBK-M and the same damping coefficient, time
4623     steps of 12 fs are possible for the same system. Similar results
4624     are obtained for a solvated protein-DNA simulation of estrogen receptor
4625     ER with estrogen response element ERE. A parallel version of BBK-M
4626     runs nearly three times faster than the Verlet-I/r-RESPA (reversible
4627     reference system propagator algorithm) when using the largest stable
4628     time step on each one, and it also parallelizes well. The computation
4629     of diffusion coefficients for flexible water and ER/ERE shows that
4630     when mild damping of up to 0.2 ps-1 is used the dynamics are not
4631     significantly distorted. (C) 2001 American Institute of Physics.},
4632 gezelter 3302 Annote = {397CQ Times Cited:14 Cited References Count:36},
4633     Author = {J. A. Izaguirre and D. P. Catarello and J. M. Wozniak and R. D. Skeel},
4634     Issn = {0021-9606},
4635     Journal = {Journal of Chemical Physics},
4636     Month = {Feb 1},
4637     Number = {5},
4638     Pages = {2090-2098},
4639     Title = {Langevin stabilization of molecular dynamics},
4640     Uri = {<Go to ISI>://000166676100020},
4641     Volume = {114},
4642     Year = {2001}}
4643 tim 2746
4644 gezelter 3302 @article{Torre1977,
4645     Author = {Jose Garcia De La Torre, V.A. Bloomfield},
4646     Journal = {Biopolymers},
4647     Pages = {1747-1763},
4648     Title = {Hydrodynamic properties of macromolecular complexes. I. Translation},
4649     Volume = {16},
4650     Year = {1977}}
4651 tim 2999
4652 gezelter 3302 @article{Kale1999,
4653     Abstract = {Molecular dynamics programs simulate the behavior of biomolecular
4654 tim 2999 systems, leading to understanding of their functions. However, the
4655     computational complexity of such simulations is enormous. Parallel
4656     machines provide the potential to meet this computational challenge.
4657     To harness this potential, it is necessary to develop a scalable
4658     program. It is also necessary that the program be easily modified
4659     by application-domain programmers. The NAMD2 program presented in
4660     this paper seeks to provide these desirable features. It uses spatial
4661     decomposition combined with force decomposition to enhance scalability.
4662     It uses intelligent periodic load balancing, so as to maximally
4663     utilize the available compute power. It is modularly organized,
4664     and implemented using Charm++, a parallel C++ dialect, so as to
4665     enhance its modifiability. It uses a combination of numerical techniques
4666     and algorithms to ensure that energy drifts are minimized, ensuring
4667     accuracy in long running calculations. NAMD2 uses a portable run-time
4668     framework called Converse that also supports interoperability among
4669     multiple parallel paradigms. As a result, different components of
4670     applications can be written in the most appropriate parallel paradigms.
4671     NAMD2 runs on most parallel machines including workstation clusters
4672     and has yielded speedups in excess of 180 on 220 processors. This
4673     paper also describes the performance obtained on some benchmark
4674     applications. (C) 1999 Academic Press.},
4675 gezelter 3302 Annote = {194FM Times Cited:373 Cited References Count:51},
4676     Author = {L. Kale and R. Skeel and M. Bhandarkar and R. Brunner and A. Gursoy and N. Krawetz and J. Phillips and A. Shinozaki and K. Varadarajan and K. Schulten},
4677     Issn = {0021-9991},
4678     Journal = {Journal of Computational Physics},
4679     Month = {May 1},
4680     Number = {1},
4681     Pages = {283-312},
4682     Title = {NAMD2: Greater scalability for parallel molecular dynamics},
4683     Uri = {<Go to ISI>://000080181500013},
4684     Volume = {151},
4685     Year = {1999}}
4686 tim 2999
4687 gezelter 3302 @article{Kane2000,
4688     Abstract = {The purpose of this work is twofold. First, we demonstrate analytically
4689 tim 2999 that the classical Newmark family as well as related integration
4690     algorithms are variational in the sense of the Veselov formulation
4691     of discrete mechanics. Such variational algorithms are well known
4692     to be symplectic and momentum preserving and to often have excellent
4693     global energy behaviour. This analytical result is verified through
4694     numerical examples and is believed to be one of the primary reasons
4695     that this class of algorithms performs so well. Second, we develop
4696     algorithms for mechanical systems with forcing, and in particular,
4697     for dissipative systems. In this case, we develop integrators that
4698     are based on a discretization of the Lagrange d'Alembert principle
4699     as well as on a variational formulation of dissipation. It is demonstrated
4700     that these types of structured integrators have good numerical behaviour
4701     in terms of obtaining the correct amounts by which the energy changes
4702     over the integration run. Copyright (C) 2000 John Wiley & Sons,
4703     Ltd.},
4704 gezelter 3302 Annote = {373CJ Times Cited:30 Cited References Count:41},
4705     Author = {C. Kane and J. E. Marsden and M. Ortiz and M. West},
4706     Issn = {0029-5981},
4707     Journal = {International Journal for Numerical Methods in Engineering},
4708     Month = {Dec 10},
4709     Number = {10},
4710     Pages = {1295-1325},
4711     Title = {Variational integrators and the Newmark algorithm for conservative and dissipative mechanical systems},
4712     Uri = {<Go to ISI>://000165270600004},
4713     Volume = {49},
4714     Year = {2000}}
4715 tim 2999
4716 gezelter 3302 @article{Klimov1997,
4717     Abstract = {The viscosity (eta) dependence of the folding rates for four sequences
4718 tim 2999 (the native state of three sequences is a beta sheet, while the
4719     fourth forms an alpha helix) is calculated for off-lattice models
4720     of proteins. Assuming that the dynamics is given by the Langevin
4721     equation, we show that the folding rates increase linearly at low
4722     viscosities eta, decrease as 1/eta at large eta, and have a maximum
4723     at intermediate values. The Kramers' theory of barrier crossing
4724     provides a quantitative fit of the numerical results. By mapping
4725     the simulation results to real proteins we estimate that for optimized
4726     sequences the time scale for forming a four turn alpha-helix topology
4727     is about 500 ns, whereas for beta sheet it is about 10 mu s.},
4728 gezelter 3302 Annote = {Xk293 Times Cited:77 Cited References Count:17},
4729     Author = {D. K. Klimov and D. Thirumalai},
4730     Issn = {0031-9007},
4731     Journal = {Physical Review Letters},
4732     Month = {Jul 14},
4733     Number = {2},
4734     Pages = {317-320},
4735     Title = {Viscosity dependence of the folding rates of proteins},
4736     Uri = {<Go to ISI>://A1997XK29300035},
4737     Volume = {79},
4738     Year = {1997}}
4739 tim 2746
4740 gezelter 3302 @article{Kol1997,
4741     Abstract = {Rigid-body molecular dynamics simulations typically are performed
4742 tim 2999 in a quaternion representation. The nonseparable form of the Hamiltonian
4743     in quaternions prevents the use of a standard leapfrog (Verlet)
4744     integrator, so nonsymplectic Runge-Kutta, multistep, or extrapolation
4745     methods are generally used, This is unfortunate since symplectic
4746     methods like Verlet exhibit superior energy conservation in long-time
4747     integrations. In this article, we describe an alternative method,
4748     which we call RSHAKE (for rotation-SHAKE), in which the entire rotation
4749     matrix is evolved (using the scheme of McLachlan and Scovel [J.
4750     Nonlin. Sci, 16 233 (1995)]) in tandem with the particle positions.
4751     We employ a fast approximate Newton solver to preserve the orthogonality
4752     of the rotation matrix. We test our method on a system of soft-sphere
4753     dipoles and compare with quaternion evolution using a 4th-order
4754     predictor-corrector integrator, Although the short-time error of
4755     the quaternion algorithm is smaller for fixed time step than that
4756     for RSHAKE, the quaternion scheme exhibits an energy drift which
4757     is not observed in simulations with RSHAKE, hence a fixed energy
4758     tolerance can be achieved by using a larger time step, The superiority
4759     of RSHAKE increases with system size. (C) 1997 American Institute
4760     of Physics.},
4761 gezelter 3302 Annote = {Xq332 Times Cited:11 Cited References Count:18},
4762     Author = {A. Kol and B. B. Laird and B. J. Leimkuhler},
4763     Issn = {0021-9606},
4764     Journal = {Journal of Chemical Physics},
4765     Month = {Aug 15},
4766     Number = {7},
4767     Pages = {2580-2588},
4768     Title = {A symplectic method for rigid-body molecular simulation},
4769     Uri = {<Go to ISI>://A1997XQ33200046},
4770     Volume = {107},
4771     Year = {1997}}
4772 tim 2999
4773 gezelter 3302 @article{Lansac2001,
4774     Abstract = {Cyanobiphenyls (nCB's) represent a useful and intensively studied
4775 tim 2999 class of mesogens. Many of the peculiar properties of nCB's (e.g.,
4776     the occurence of the partial bilayer smectic-A(d) phase) are thought
4777     to be a manifestation of short-range antiparallel association of
4778     neighboring molecules, resulting from strong dipole-dipole interactions
4779     between cyano groups. To test and extend existing models of microscopic
4780     ordering in nCB's, we carry out large-scale atomistic simulation
4781     studies of the microscopic structure and dynamics of the Sm-A(d)
4782     phase of 4-octyl-4'-cyanobiphenyl (8CB). We compute a variety of
4783     thermodynamic, structural, and dynamical properties for this material,
4784     and make a detailed comparison of our results with experimental
4785     measurements in order to validate our molecular model. Semiquantitative
4786     agreement with experiment is found: the smectic layer spacing and
4787     mass density are well reproduced, translational diffusion constants
4788     are similar to experiment, but the orientational ordering of alkyl
4789     chains is overestimated. This simulation provides a detailed picture
4790     of molecular conformation, smectic layer structure, and intermolecular
4791     correlations in Sm-A(d) 8CB, and demonstrates that pronounced short-range
4792     antiparallel association of molecules arising from dipole-dipole
4793     interactions plays a dominant role in determining the molecular-scale
4794     structure of 8CB.},
4795 gezelter 3302 Annote = {Part 1 496QF Times Cited:10 Cited References Count:60},
4796     Author = {Y. Lansac and M. A. Glaser and N. A. Clark},
4797     Issn = {1063-651X},
4798     Journal = {Physical Review E},
4799     Month = {Nov},
4800     Number = {5},
4801     Pages = {-},
4802     Title = {Microscopic structure and dynamics of a partial bilayer smectic liquid crystal},
4803     Uri = {<Go to ISI>://000172406900063},
4804     Volume = {6405},
4805     Year = {2001}}
4806 tim 2999
4807 gezelter 3302 @article{Lansac2003,
4808     Abstract = {Recently, a new class of smectic liquid crystal phases characterized
4809 tim 2999 by the spontaneous formation of macroscopic chiral domains from
4810     achiral bent-core molecules has been discovered. We have carried
4811     out Monte Carlo simulations of a minimal hard spherocylinder dimer
4812     model to investigate the role of excluded volume interactions in
4813     determining the phase behavior of bent-core materials and to probe
4814     the molecular origins of polar and chiral symmetry breaking. We
4815     present the phase diagram of hard spherocylinder dimers of length-diameter
4816     ratio of 5 as a function of pressure or density and dimer opening
4817     angle psi. With decreasing psi, a transition from a nonpolar to
4818     a polar smectic A phase is observed near psi=167degrees, and the
4819     nematic phase becomes thermodynamically unstable for psi<135degrees.
4820     Free energy calculations indicate that the antipolar smectic A (SmAP(A))
4821     phase is more stable than the polar smectic A phase (SmAP(F)). No
4822     chiral smectic or biaxial nematic phases were found.},
4823 gezelter 3302 Annote = {Part 1 646CM Times Cited:15 Cited References Count:38},
4824     Author = {Y. Lansac and P. K. Maiti and N. A. Clark and M. A. Glaser},
4825     Issn = {1063-651X},
4826     Journal = {Physical Review E},
4827     Month = {Jan},
4828     Number = {1},
4829     Pages = {-},
4830     Title = {Phase behavior of bent-core molecules},
4831     Uri = {<Go to ISI>://000181017300042},
4832     Volume = {67},
4833     Year = {2003}}
4834 tim 2999
4835 gezelter 3302 @book{Leach2001,
4836     Address = {Harlow, England},
4837     Author = {A. Leach},
4838     Edition = {2nd},
4839     Publisher = {Pearson Educated Limited},
4840     Title = {Molecular Modeling: Principles and Applications},
4841     Year = {2001}}
4842 tim 2999
4843 gezelter 3302 @article{Leimkuhler1999,
4844     Abstract = {Reversible and adaptive integration methods based on Kustaanheimo-Stiefel
4845 tim 2999 regularization and modified Sundman transformations are applied
4846     to simulate general perturbed Kepler motion and to compute classical
4847     trajectories of atomic systems (e.g. Rydberg atoms). The new family
4848     of reversible adaptive regularization methods also conserves angular
4849     momentum and exhibits superior energy conservation and numerical
4850     stability in long-time integrations. The schemes are appropriate
4851     for scattering, for astronomical calculations of escape time and
4852     long-term stability, and for classical and semiclassical studies
4853     of atomic dynamics. The components of an algorithm for trajectory
4854     calculations are described. Numerical experiments illustrate the
4855     effectiveness of the reversible approach.},
4856 gezelter 3302 Annote = {199EE Times Cited:11 Cited References Count:48},
4857     Author = {B. Leimkuhler},
4858     Issn = {1364-503X},
4859     Journal = {Philosophical Transactions of the Royal Society of London Series a-Mathematical Physical and Engineering Sciences},
4860     Month = {Apr 15},
4861     Number = {1754},
4862     Pages = {1101-1133},
4863     Title = {Reversible adaptive regularization: perturbed Kepler motion and classical atomic trajectories},
4864     Uri = {<Go to ISI>://000080466800007},
4865     Volume = {357},
4866     Year = {1999}}
4867 tim 2999
4868 gezelter 3302 @book{Leimkuhler2004,
4869     Address = {Cambridge},
4870     Author = {B. Leimkuhler and S. Reich},
4871     Publisher = {Cambridge University Press},
4872     Title = {Simulating Hamiltonian Dynamics},
4873     Year = {2004}}
4874 tim 2999
4875 gezelter 3302 @article{Levelut1981,
4876     Annote = {Ml751 Times Cited:96 Cited References Count:16},
4877     Author = {A. M. Levelut and R. J. Tarento and F. Hardouin and M. F. Achard and G. Sigaud},
4878     Issn = {1050-2947},
4879     Journal = {Physical Review A},
4880     Number = {4},
4881     Pages = {2180-2186},
4882     Title = {Number of Sa Phases},
4883     Uri = {<Go to ISI>://A1981ML75100057},
4884     Volume = {24},
4885     Year = {1981}}
4886 tim 2999
4887 gezelter 3302 @article{Lieb1982,
4888     Annote = {Nu461 Times Cited:40 Cited References Count:28},
4889     Author = {W. R. Lieb and M. Kovalycsik and R. Mendelsohn},
4890     Issn = {0006-3002},
4891     Journal = {Biochimica Et Biophysica Acta},
4892     Number = {2},
4893     Pages = {388-398},
4894     Title = {Do Clinical-Levels of General-Anesthetics Affect Lipid Bilayers - Evidence from Raman-Scattering},
4895     Uri = {<Go to ISI>://A1982NU46100012},
4896     Volume = {688},
4897     Year = {1982}}
4898 tim 2999
4899 gezelter 3302 @article{Link1997,
4900     Abstract = {A smectic liquid-crystal phase made from achiral molecules with bent
4901 tim 2999 cores was found to have fluid layers that exhibit two spontaneous
4902     symmetry-breaking instabilities: polar molecular orientational ordering
4903     about the layer normal and molecular tilt. These instabilities combine
4904     to form a chiral layer structure with a handedness that depends
4905     on the sign of the tilt. The bulk states are either antiferroelectric-racemic,
4906     with the layer polar direction and handedness alternating in sign
4907     from layer to layer, or antiferroelectric-chiral, which is of uniform
4908     layer handedness. Both states exhibit an electric field-induced
4909     transition from antiferroelectric to ferroelectric.},
4910 gezelter 3302 Annote = {Yl002 Times Cited:407 Cited References Count:25},
4911     Author = {D. R. Link and G. Natale and R. Shao and J. E. Maclennan and N. A. Clark and E. Korblova and D. M. Walba},
4912     Issn = {0036-8075},
4913     Journal = {Science},
4914     Month = {Dec 12},
4915     Number = {5345},
4916     Pages = {1924-1927},
4917     Title = {Spontaneous formation of macroscopic chiral domains in a fluid smectic phase of achiral molecules},
4918     Uri = {<Go to ISI>://A1997YL00200028},
4919     Volume = {278},
4920     Year = {1997}}
4921 tim 2999
4922 gezelter 3302 @article{Liwo2005,
4923     Annote = {Suppl. 1 005MG Times Cited:0 Cited References Count:0},
4924     Author = {A. Liwo and M. Khalili and H. A. Scheraga},
4925     Issn = {1742-464X},
4926     Journal = {Febs Journal},
4927     Month = {Jul},
4928     Pages = {359-360},
4929     Title = {Ab initio simulations of protein folding pathways by molecular dynamics with the united-residue (UNRES) model of polypeptide chains},
4930     Uri = {<Go to ISI>://000234826102043},
4931     Volume = {272},
4932     Year = {2005}}
4933 tim 2746
4934 gezelter 3302 @article{Luty1994,
4935     Abstract = {We compare the Particle-Particle Particle-Mesh (PPPM) and Ewald methods
4936 tim 2999 for calculating electrostatic interactions in periodic molecular
4937     systems. A brief comparison of the theories shows that the methods
4938     are very similar differing mainly in the technique which is used
4939     to perform the ''k-space'' or mesh calculation. Because the PPPM
4940     utilizes the highly efficient numerical Fast Fourier Transform (FFT)
4941     method it requires significantly less computational effort than
4942     the Ewald method and scale's almost linearly with system size.},
4943 gezelter 3302 Annote = {Qf464 Times Cited:50 Cited References Count:20},
4944     Author = {B. A. Luty and M. E. Davis and I. G. Tironi and W. F. Vangunsteren},
4945     Issn = {0892-7022},
4946     Journal = {Molecular Simulation},
4947     Number = {1},
4948     Pages = {11-20},
4949     Title = {A Comparison of Particle-Particle, Particle-Mesh and Ewald Methods for Calculating Electrostatic Interactions in Periodic Molecular-Systems},
4950     Uri = {<Go to ISI>://A1994QF46400002},
4951     Volume = {14},
4952     Year = {1994}}
4953 tim 2999
4954 gezelter 3302 @book{Marion1990,
4955     Address = {New York},
4956     Author = {J.~B. Marion},
4957     Edition = {2rd},
4958     Publisher = {Academic Press},
4959     Title = {Classical Dynamics of Particles and Systems},
4960     Year = {1990}}
4961 tim 2999
4962 gezelter 3302 @article{Marrink1994,
4963     Abstract = {To obtain insight in the process of water permeation through a lipid
4964 tim 2999 membrane, we performed molecular dynamics simulations on a phospholipid
4965     (DPPC)/water system with atomic detail. Since the actual process
4966     of permeation is too slow to be studied directly, we deduced the
4967     permeation rate indirectly via computation of the free energy and
4968     diffusion rate profiles of a water molecule across the bilayer.
4969     We conclude that the permeation of water through a lipid membrane
4970     cannot be described adequately by a simple homogeneous solubility-diffusion
4971     model. Both the excess free energy and the diffusion rate strongly
4972     depend on the position in the membrane, as a result from the inhomogeneous
4973     nature of the membrane. The calculated excess free energy profile
4974     has a shallow slope and a maximum height of 26 kJ/mol. The diffusion
4975     rate is highest in the middle of the membrane where the lipid density
4976     is low. In the interfacial region almost all water molecules are
4977     bound by the lipid headgroups, and the diffusion turns out to be
4978     1 order of magnitude smaller. The total transport process is essentially
4979     determined by the free energy barrier. The rate-limiting step is
4980     the permeation through the dense part of the lipid tails, where
4981     the resistance is highest. We found a permeation rate of 7(+/-3)
4982     x 10(-2) cm/s at 350 K, comparable to experimental values for DPPC
4983     membranes, if corrected for the temperature of the simulation. Taking
4984     the inhomogeneity of the membrane into account, we define a new
4985     ''four-region'' model which seems to be more realistic than the
4986     ''two-phase'' solubility-diffusion model.},
4987 gezelter 3302 Annote = {Ng219 Times Cited:187 Cited References Count:25},
4988     Author = {S. J. Marrink and H. J. C. Berendsen},
4989     Issn = {0022-3654},
4990     Journal = {Journal of Physical Chemistry},
4991     Month = {Apr 14},
4992     Number = {15},
4993     Pages = {4155-4168},
4994     Title = {Simulation of Water Transport through a Lipid-Membrane},
4995     Uri = {<Go to ISI>://A1994NG21900040},
4996     Volume = {98},
4997     Year = {1994}}
4998 tim 2999
4999 gezelter 3302 @article{Marrink2004,
5000     Author = {S.~J. Marrink and A.~H. de~Vries and A.~E. Mark},
5001     Journal = {J. Phys. Chem. B},
5002     Pages = {750-760},
5003     Title = {Coarse Grained Model for Semiquantitative Lipid Simulations},
5004     Volume = {108},
5005     Year = {2004}}
5006 tim 2999
5007 gezelter 3302 @article{Marsden1998,
5008     Abstract = {This paper presents a geometric-variational approach to continuous
5009 tim 2999 and discrete mechanics and field theories. Using multisymplectic
5010     geometry, we show that the existence of the fundamental geometric
5011     structures as well as their preservation along solutions can be
5012     obtained directly from the variational principle. In particular,
5013     we prove that a unique multisymplectic structure is obtained by
5014     taking the derivative of an action function, and use this structure
5015     to prove covariant generalizations of conservation of symplecticity
5016     and Noether's theorem. Natural discretization schemes for PDEs,
5017     which have these important preservation properties, then follow
5018     by choosing a discrete action functional. In the case of mechanics,
5019     we recover the variational symplectic integrators of Veselov type,
5020     while for PDEs we obtain covariant spacetime integrators which conserve
5021     the corresponding discrete multisymplectic form as well as the discrete
5022     momentum mappings corresponding to symmetries. We show that the
5023     usual notion of symplecticity along an infinite-dimensional space
5024     of fields can be naturally obtained by making a spacetime split.
5025     All of the aspects of our method are demonstrated with a nonlinear
5026     sine-Gordon equation, including computational results and a comparison
5027     with other discretization schemes.},
5028 gezelter 3302 Annote = {154RH Times Cited:88 Cited References Count:36},
5029     Author = {J. E. Marsden and G. W. Patrick and S. Shkoller},
5030     Issn = {0010-3616},
5031     Journal = {Communications in Mathematical Physics},
5032     Month = {Dec},
5033     Number = {2},
5034     Pages = {351-395},
5035     Title = {Multisymplectic geometry, variational integrators, and nonlinear PDEs},
5036     Uri = {<Go to ISI>://000077902200006},
5037     Volume = {199},
5038     Year = {1998}}
5039 tim 2999
5040 gezelter 3302 @article{Matthey2004,
5041     Abstract = {PROTOMOL is a high-performance framework in C++ for rapid prototyping
5042 tim 2999 of novel algorithms for molecular dynamics and related applications.
5043     Its flexibility is achieved primarily through the use of inheritance
5044     and design patterns (object-oriented programming): Performance is
5045     obtained by using templates that enable generation of efficient
5046     code for sections critical to performance (generic programming).
5047     The framework encapsulates important optimizations that can be used
5048     by developers, such as parallelism in the force computation. Its
5049     design is based on domain analysis of numerical integrators for
5050     molecular dynamics (MD) and of fast solvers for the force computation,
5051     particularly due to electrostatic interactions. Several new and
5052     efficient algorithms are implemented in PROTOMOL. Finally, it is
5053     shown that PROTOMOL'S sequential performance is excellent when compared
5054     to a leading MD program, and that it scales well for moderate number
5055     of processors. Binaries and source codes for Windows, Linux, Solaris,
5056     IRIX, HP-UX, and AIX platforms are available under open source license
5057     at http://protomol.sourceforge.net.},
5058 gezelter 3302 Annote = {860EP Times Cited:2 Cited References Count:52},
5059     Author = {T. Matthey and T. Cickovski and S. Hampton and A. Ko and Q. Ma and M. Nyerges and T. Raeder and T. Slabach and J. A. Izaguirre},
5060     Issn = {0098-3500},
5061     Journal = {Acm Transactions on Mathematical Software},
5062     Month = {Sep},
5063     Number = {3},
5064     Pages = {237-265},
5065     Title = {ProtoMol, an object-oriented framework for prototyping novel algorithms for molecular dynamics},
5066     Uri = {<Go to ISI>://000224325600001},
5067     Volume = {30},
5068     Year = {2004}}
5069 tim 2999
5070 gezelter 3302 @article{McLachlan1993,
5071     Author = {R.~I McLachlan},
5072     Journal = {prl},
5073     Pages = {3043-3046},
5074     Title = {Explicit Lie-Poisson integration and the Euler equations},
5075     Volume = {71},
5076     Year = {1993}}
5077 tim 2999
5078 gezelter 3302 @article{McLachlan1998,
5079     Abstract = {We give a survey and some new examples of generating functions for
5080 tim 2999 systems with symplectic structure, systems with a first integral,
5081     systems that preserve volume, and systems with symmetries and/or
5082     time-reversing symmetries. Both ODEs and maps are treated, and we
5083     discuss how generating functions may be used in the structure-preserving
5084     numerical integration of ODEs with the above properties.},
5085 gezelter 3302 Annote = {Yt049 Times Cited:7 Cited References Count:26},
5086     Author = {R. I. McLachlan and G. R. W. Quispel},
5087     Issn = {0167-2789},
5088     Journal = {Physica D},
5089     Month = {Jan 15},
5090     Number = {1-2},
5091     Pages = {298-309},
5092     Title = {Generating functions for dynamical systems with symmetries, integrals, and differential invariants},
5093     Uri = {<Go to ISI>://000071558900021},
5094     Volume = {112},
5095     Year = {1998}}
5096 tim 2999
5097 gezelter 3302 @article{McLachlan1998a,
5098     Abstract = {We consider properties of flows, the relationships between them, and
5099 tim 2999 whether numerical integrators can be made to preserve these properties.
5100     This is done in the context of automorphisms and antiautomorphisms
5101     of a certain group generated by maps associated to vector fields.
5102     This new framework unifies several known constructions. We also
5103     use the concept of #covariance# of a numerical method with respect
5104     to a group of coordinate transformations. The main application is
5105     to explore the relationship between spatial symmetries, reversing
5106     symmetries, and time symmetry of flows and numerical integrators.},
5107 gezelter 3302 Annote = {Zc449 Times Cited:14 Cited References Count:33},
5108     Author = {R. I. McLachlan and G. R. W. Quispel and G. S. Turner},
5109     Issn = {0036-1429},
5110     Journal = {Siam Journal on Numerical Analysis},
5111     Month = {Apr},
5112     Number = {2},
5113     Pages = {586-599},
5114     Title = {Numerical integrators that preserve symmetries and reversing symmetries},
5115     Uri = {<Go to ISI>://000072580500010},
5116     Volume = {35},
5117     Year = {1998}}
5118 tim 2999
5119 gezelter 3302 @article{McLachlan2005,
5120     Abstract = {In this paper we revisit the Moser-Veselov description of the free
5121 tim 2999 rigid body in body coordinates, which, in the 3 x 3 case, can be
5122     implemented as an explicit, second-order, integrable approximation
5123     of the continuous solution. By backward error analysis, we study
5124     the modified vector field which is integrated exactly by the discrete
5125     algorithm. We deduce that the discrete Moser-Veselov (DMV) is well
5126     approximated to higher order by time reparametrizations of the continuous
5127     equations (modified vector field). We use the modified vector field
5128     to scale the initial data of the DMV to improve the order of the
5129     approximation and show the equivalence of the DMV and the RATTLE
5130     algorithm. Numerical integration with these preprocessed initial
5131     data is several orders of magnitude more accurate than the original
5132     DMV and RATTLE approach.},
5133 gezelter 3302 Annote = {911NS Times Cited:0 Cited References Count:14},
5134     Author = {R. I. McLachlan and A. Zanna},
5135     Issn = {1615-3375},
5136     Journal = {Foundations of Computational Mathematics},
5137     Month = {Feb},
5138     Number = {1},
5139     Pages = {87-123},
5140     Title = {The discrete Moser-Veselov algorithm for the free rigid body, revisited},
5141     Uri = {<Go to ISI>://000228011900003},
5142     Volume = {5},
5143     Year = {2005}}
5144 tim 2999
5145 gezelter 3302 @article{Meineke2005,
5146     Abstract = {OOPSE is a new molecular dynamics simulation program that is capable
5147 tim 2999 of efficiently integrating equations of motion for atom types with
5148     orientational degrees of freedom (e.g. #sticky# atoms and point
5149     dipoles). Transition metals can also be simulated using the embedded
5150     atom method (EAM) potential included in the code. Parallel simulations
5151     are carried out using the force-based decomposition method. Simulations
5152     are specified using a very simple C-based meta-data language. A
5153     number of advanced integrators are included, and the basic integrator
5154     for orientational dynamics provides substantial improvements over
5155     older quaternion-based schemes. (C) 2004 Wiley Periodicals, Inc.},
5156 gezelter 3302 Annote = {891CF Times Cited:1 Cited References Count:56},
5157     Author = {M. A. Meineke and C. F. Vardeman and T. Lin and C. J. Fennell and J. D. Gezelter},
5158     Issn = {0192-8651},
5159     Journal = {Journal of Computational Chemistry},
5160     Month = {Feb},
5161     Number = {3},
5162     Pages = {252-271},
5163     Title = {OOPSE: An object-oriented parallel simulation engine for molecular dynamics},
5164     Uri = {<Go to ISI>://000226558200006},
5165     Volume = {26},
5166     Year = {2005}}
5167 tim 2999
5168 gezelter 3302 @article{Melchionna1993,
5169     Abstract = {In this paper we write down equations of motion (following the approach
5170 tim 2999 pioneered by Hoover) for an exact isothermal-isobaric molecular
5171     dynamics simulation, and we extend them to multiple thermostating
5172     rates, to a shape-varying cell and to molecular systems, coherently
5173     with the previous 'extended system method'. An integration scheme
5174     is proposed together with a numerical illustration of the method.},
5175 gezelter 3302 Annote = {Kq355 Times Cited:172 Cited References Count:17},
5176     Author = {S. Melchionna and G. Ciccotti and B. L. Holian},
5177     Issn = {0026-8976},
5178     Journal = {Molecular Physics},
5179     Month = {Feb 20},
5180     Number = {3},
5181     Pages = {533-544},
5182     Title = {Hoover Npt Dynamics for Systems Varying in Shape and Size},
5183     Uri = {<Go to ISI>://A1993KQ35500002},
5184     Volume = {78},
5185     Year = {1993}}
5186 tim 2999
5187 gezelter 3302 @article{Memmer2002,
5188     Abstract = {The phase behaviour of achiral banana-shaped molecules was studied
5189 tim 2999 by computer simulation. The banana-shaped molecules were described
5190     by model intermolecular interactions based on the Gay-Berne potential.
5191     The characteristic molecular structure was considered by joining
5192     two calamitic Gay-Berne particles through a bond to form a biaxial
5193     molecule of point symmetry group C-2v with a suitable bending angle.
5194     The dependence on temperature of systems of N=1024 rigid banana-shaped
5195     molecules with bending angle phi=140degrees has been studied by
5196     means of Monte Carlo simulations in the isobaric-isothermal ensemble
5197     (NpT). On cooling an isotropic system, two phase transitions characterized
5198     by phase transition enthalpy, entropy and relative volume change
5199     have been observed. For the first time by computer simulation of
5200     a many-particle system of banana-shaped molecules, at low temperature
5201     an untilted smectic phase showing a global phase biaxiality and
5202     a spontaneous local polarization in the layers, i.e. a local polar
5203     arrangement of the steric dipoles, with an antiferroelectric-like
5204     superstructure could be proven, a phase structure which recently
5205     has been discovered experimentally. Additionally, at intermediate
5206     temperature a nematic-like phase has been proved, whereas close
5207     to the transition to the smectic phase hints of a spontaneous achiral
5208     symmetry breaking have been determined. Here, in the absence of
5209     a layered structure a helical superstructure has been formed. All
5210     phases have been characterized by visual representations of selected
5211     configurations, scalar and pseudoscalar correlation functions, and
5212     order parameters.},
5213 gezelter 3302 Annote = {531HT Times Cited:12 Cited References Count:37},
5214     Author = {R. Memmer},
5215     Issn = {0267-8292},
5216     Journal = {Liquid Crystals},
5217     Month = {Apr},
5218     Number = {4},
5219     Pages = {483-496},
5220     Title = {Liquid crystal phases of achiral banana-shaped molecules: a computer simulation study},
5221     Uri = {<Go to ISI>://000174410500001},
5222     Volume = {29},
5223     Year = {2002}}
5224 tim 2999
5225 gezelter 3302 @article{Metropolis1949,
5226     Author = {N. Metropolis and S. Ulam},
5227     Journal = {J. Am. Stat. Ass.},
5228     Pages = {335-341},
5229     Title = {The $\mbox{Monte Carlo}$ Method},
5230     Volume = {44},
5231     Year = {1949}}
5232 tim 2999
5233 gezelter 3302 @article{Mielke2004,
5234     Abstract = {The torque generated by RNA polymerase as it tracks along double-stranded
5235 tim 2999 DNA can potentially induce long-range structural deformations integral
5236     to mechanisms of biological significance in both prokaryotes and
5237     eukaryotes. In this paper, we introduce a dynamic computer model
5238     for investigating this phenomenon. Duplex DNA is represented as
5239     a chain of hydrodynamic beads interacting through potentials of
5240     linearly elastic stretching, bending, and twisting, as well as excluded
5241     volume. The chain, linear when relaxed, is looped to form two open
5242     but topologically constrained subdomains. This permits the dynamic
5243     introduction of torsional stress via a centrally applied torque.
5244     We simulate by Brownian dynamics the 100 mus response of a 477-base
5245     pair B-DNA template to the localized torque generated by the prokaryotic
5246     transcription ensemble. Following a sharp rise at early times, the
5247     distributed twist assumes a nearly constant value in both subdomains,
5248     and a succession of supercoiling deformations occurs as superhelical
5249     stress is increasingly partitioned to writhe. The magnitude of writhe
5250     surpasses that of twist before also leveling off when the structure
5251     reaches mechanical equilibrium with the torsional load. Superhelicity
5252     is simultaneously right handed in one subdomain and left handed
5253     in the other, as predicted by the #transcription-induced##twin-supercoiled-domain#
5254     model [L. F. Liu and J. C. Wang, Proc. Natl. Acad. Sci. U.S.A. 84,
5255     7024 (1987)]. The properties of the chain at the onset of writhing
5256     agree well with predictions from theory, and the generated stress
5257     is ample for driving secondary structural transitions in physiological
5258     DNA. (C) 2004 American Institute of Physics.},
5259 gezelter 3302 Annote = {861ZF Times Cited:3 Cited References Count:34},
5260     Author = {S. P. Mielke and W. H. Fink and V. V. Krishnan and N. Gronbech-Jensen and C. J. Benham},
5261     Issn = {0021-9606},
5262     Journal = {Journal of Chemical Physics},
5263     Month = {Oct 22},
5264     Number = {16},
5265     Pages = {8104-8112},
5266     Title = {Transcription-driven twin supercoiling of a DNA loop: A Brownian dynamics study},
5267     Uri = {<Go to ISI>://000224456500064},
5268     Volume = {121},
5269     Year = {2004}}
5270 tim 2746
5271 gezelter 3302 @article{Naess2001,
5272     Abstract = {The three Eulerian angles constitute the classical choice of generalized
5273 tim 2999 coordinates used to describe the three degrees of rotational freedom
5274     of a rigid body, but it has long been known that this choice yields
5275     singular equations of motion. The latter is also true when Eulerian
5276     angles are used in Brownian dynamics analyses of the angular orientation
5277     of single rigid bodies and segmented polymer chains. Starting from
5278     kinetic theory we here show that by instead employing the three
5279     components of Cartesian rotation vectors as the generalized coordinates
5280     describing angular orientation, no singularity appears in the configuration
5281     space diffusion equation and the associated Brownian dynamics algorithm.
5282     The suitability of Cartesian rotation vectors in Brownian dynamics
5283     simulations of segmented polymer chains with spring-like or ball-socket
5284     joints is discussed. (C) 2001 Elsevier Science B.V. All rights reserved.},
5285 gezelter 3302 Annote = {433TA Times Cited:7 Cited References Count:19},
5286     Author = {S. N. Naess and H. M. Adland and A. Mikkelsen and A. Elgsaeter},
5287     Issn = {0378-4371},
5288     Journal = {Physica A},
5289     Month = {May 15},
5290     Number = {3-4},
5291     Pages = {323-339},
5292     Title = {Brownian dynamics simulation of rigid bodies and segmented polymer chains. Use of Cartesian rotation vectors as the generalized coordinates describing angular orientations},
5293     Uri = {<Go to ISI>://000168774800005},
5294     Volume = {294},
5295     Year = {2001}}
5296 tim 2746
5297 gezelter 3302 @article{Niori1996,
5298     Abstract = {The synthesis of a banana-shaped molecule is reported and it is found
5299 tim 2999 that the smectic phase which it forms is biaxial with the molecules
5300     packed in the best,direction into a layer. Because of this characteristic
5301     packing, spontaneous polarization appears parallel to the layer
5302     and switches on reversal of an applied electric field. This is the
5303     first obvious example of ferroelectricity in an achiral smectic
5304     phase and is ascribed to the C-2v symmetry of the molecular packing.},
5305 gezelter 3302 Annote = {Ux855 Times Cited:447 Cited References Count:18},
5306     Author = {T. Niori and T. Sekine and J. Watanabe and T. Furukawa and H. Takezoe},
5307     Issn = {0959-9428},
5308     Journal = {Journal of Materials Chemistry},
5309     Month = {Jul},
5310     Number = {7},
5311     Pages = {1231-1233},
5312     Title = {Distinct ferroelectric smectic liquid crystals consisting of banana shaped achiral molecules},
5313     Uri = {<Go to ISI>://A1996UX85500025},
5314     Volume = {6},
5315     Year = {1996}}
5316 tim 2999
5317 gezelter 3302 @article{Noguchi2002,
5318     Abstract = {We Studied the structural changes of bilayer vesicles induced by mechanical
5319 tim 2999 forces using a Brownian dynamics simulation. Two nanoparticles,
5320     which interact repulsively with amphiphilic molecules, are put inside
5321     a vesicle. The position of one nanoparticle is fixed, and the other
5322     is moved by a constant force as in optical-trapping experiments.
5323     First, the pulled vesicle stretches into a pear or tube shape. Then
5324     the inner monolayer in the tube-shaped region is deformed, and a
5325     cylindrical structure is formed between two vesicles. After stretching
5326     the cylindrical region, fission occurs near the moved vesicle. Soon
5327     after this the cylindrical region shrinks. The trapping force similar
5328     to 100 pN is needed to induce the formation of the cylindrical structure
5329     and fission.},
5330 gezelter 3302 Annote = {Part 1 568PX Times Cited:5 Cited References Count:39},
5331     Author = {H. Noguchi and M. Takasu},
5332     Issn = {1063-651X},
5333     Journal = {Physical Review E},
5334     Month = {may},
5335     Number = {5},
5336     Pages = {-},
5337     Title = {Structural changes of pulled vesicles: A Brownian dynamics simulation},
5338     Uri = {<Go to ISI>://000176552300084},
5339     Volume = {65},
5340     Year = {2002}}
5341 tim 2746
5342 gezelter 3302 @article{Noguchi2001,
5343     Abstract = {We studied the fusion dynamics of vesicles using a Brownian dynamics
5344 tim 2999 simulation. Amphiphilic molecules spontaneously form vesicles with
5345     a bilayer structure. Two vesicles come into contact and form a stalk
5346     intermediate, in which a necklike structure only connects the outer
5347     monolayers, as predicted by the stalk hypothesis. We have found
5348     a new pathway of pore opening from stalks at high temperature: the
5349     elliptic stalk bends and contact between the ends of the arc-shaped
5350     stalk leads to pore opening. On the other hand, we have clarified
5351     that the pore-opening process at low temperature agrees with the
5352     modified stalk model: a pore is induced by contact between the inner
5353     monolayers inside the stalk. (C) 2001 American Institute of Physics.},
5354 gezelter 3302 Annote = {491UW Times Cited:48 Cited References Count:25},
5355     Author = {H. Noguchi and M. Takasu},
5356     Issn = {0021-9606},
5357     Journal = {Journal of Chemical Physics},
5358     Month = {Nov 22},
5359     Number = {20},
5360     Pages = {9547-9551},
5361     Title = {Fusion pathways of vesicles: A Brownian dynamics simulation},
5362     Uri = {<Go to ISI>://000172129300049},
5363     Volume = {115},
5364     Year = {2001}}
5365 tim 2746
5366 gezelter 3302 @book{Olver1986,
5367     Address = {New York},
5368     Author = {P.J. Olver},
5369     Publisher = {Springer},
5370     Title = {Applications of Lie groups to differential equatitons},
5371     Year = {1986}}
5372 tim 2999
5373 gezelter 3302 @article{Omelyan1998,
5374     Abstract = {A revised version of the quaternion approach for numerical integration
5375 tim 2999 of the equations of motion for rigid polyatomic molecules is proposed.
5376     The modified approach is based on a formulation of the quaternion
5377     dynamics with constraints. This allows one to resolve the rigidity
5378     problem rigorously using constraint forces. It is shown that the
5379     procedure for preservation of molecular rigidity can be realized
5380     particularly simply within the Verlet algorithm in velocity form.
5381     We demonstrate that the method presented leads to an improved numerical
5382     stability with respect to the usual quaternion rescaling scheme
5383     and it is roughly as good as the cumbersome atomic-constraint technique.
5384     (C) 1998 American Institute of Physics.},
5385 gezelter 3302 Annote = {Yx279 Times Cited:12 Cited References Count:28},
5386     Author = {I. P. Omelyan},
5387     Issn = {0894-1866},
5388     Journal = {Computers in Physics},
5389     Month = {Jan-Feb},
5390     Number = {1},
5391     Pages = {97-103},
5392     Title = {On the numerical integration of motion for rigid polyatomics: The modified quaternion approach},
5393     Uri = {<Go to ISI>://000072024300025},
5394     Volume = {12},
5395     Year = {1998}}
5396 tim 2999
5397 gezelter 3302 @article{Omelyan1998a,
5398     Abstract = {An algorithm for numerical integration of the rigid-body equations
5399 tim 2999 of motion is proposed. The algorithm uses the leapfrog scheme and
5400     the quantities involved are angular velocities and orientational
5401     variables that can be expressed in terms of either principal axes
5402     or quaternions. Due to specific features of the algorithm, orthonormality
5403     and unit norms of the orientational variables are integrals of motion,
5404     despite an approximate character of the produced trajectories. It
5405     is shown that the method presented appears to be the most efficient
5406     among all such algorithms known.},
5407 gezelter 3302 Annote = {101XL Times Cited:8 Cited References Count:22},
5408     Author = {I. P. Omelyan},
5409     Issn = {1063-651X},
5410     Journal = {Physical Review E},
5411     Month = {Jul},
5412     Number = {1},
5413     Pages = {1169-1172},
5414     Title = {Algorithm for numerical integration of the rigid-body equations of motion},
5415     Uri = {<Go to ISI>://000074893400151},
5416     Volume = {58},
5417     Year = {1998}}
5418 tim 2999
5419 gezelter 3302 @article{Owren1992,
5420     Abstract = {Continuous, explicit Runge-Kutta methods with the minimal number of
5421 tim 2999 stages are considered. These methods are continuously differentiable
5422     if and only if one of the stages is the FSAL evaluation. A characterization
5423     of a subclass of these methods is developed for orders 3, 4, and
5424     5. It is shown how the free parameters of these methods can be used
5425     either to minimize the continuous truncation error coefficients
5426     or to maximize the stability region. As a representative for these
5427     methods the fifth-order method with minimized error coefficients
5428     is chosen, supplied with an error estimation method, and analysed
5429     by using the DETEST software. The results are compared with a similar
5430     implementation of the Dormand-Prince 5(4) pair with interpolant,
5431     showing a significant advantage in the new method for the chosen
5432     problems.},
5433 gezelter 3302 Annote = {Ju936 Times Cited:25 Cited References Count:20},
5434     Author = {B. Owren and M. Zennaro},
5435     Issn = {0196-5204},
5436     Journal = {Siam Journal on Scientific and Statistical Computing},
5437     Month = {Nov},
5438     Number = {6},
5439     Pages = {1488-1501},
5440     Title = {Derivation of Efficient, Continuous, Explicit Runge-Kutta Methods},
5441     Uri = {<Go to ISI>://A1992JU93600013},
5442     Volume = {13},
5443     Year = {1992}}
5444 tim 2999
5445 gezelter 3302 @article{Palacios1998,
5446     Abstract = {The stochastic Landau-Lifshitz-Gilbert equation of motion for a classical
5447 tim 2999 magnetic moment is numerically solved (properly observing the customary
5448     interpretation of it as a Stratonovich stochastic differential equation),
5449     in order to study the dynamics of magnetic nanoparticles. The corresponding
5450     Langevin-dynamics approach allows for the study of the fluctuating
5451     trajectories of individual magnetic moments, where we have encountered
5452     remarkable phenomena in the overbarrier rotation process, such as
5453     crossing-back or multiple crossing of the potential barrier, rooted
5454     in the gyromagnetic nature of the system. Concerning averaged quantities,
5455     we study the linear dynamic response of the archetypal ensemble
5456     of noninteracting classical magnetic moments with axially symmetric
5457     magnetic anisotropy. The results are compared with different analytical
5458     expressions used to model the relaxation of nanoparticle ensembles,
5459     assessing their accuracy. It has been found that, among a number
5460     of heuristic expressions for the linear dynamic susceptibility,
5461     only the simple formula proposed by Shliomis and Stepanov matches
5462     the coarse features of the susceptibility reasonably. By comparing
5463     the numerical results with the asymptotic formula of Storonkin {Sov.
5464     Phys. Crystallogr. 30, 489 (1985) [Kristallografiya 30, 841 (1985)]},
5465     the effects of the intra-potential-well relaxation modes on the
5466     low-temperature longitudinal dynamic response have been assessed,
5467     showing their relatively small reflection in the susceptibility
5468     curves but their dramatic influence on the phase shifts. Comparison
5469     of the numerical results with the exact zero-damping expression
5470     for the transverse susceptibility by Garanin, Ishchenko, and Panina
5471     {Theor. Math. Phys. (USSR) 82, 169 (1990) [Teor. Mat. Fit. 82, 242
5472     (1990)]}, reveals a sizable contribution of the spread of the precession
5473     frequencies of the magnetic moment in the anisotropy field to the
5474     dynamic response at intermediate-to-high temperatures. [S0163-1829
5475     (98)00446-9].},
5476 gezelter 3302 Annote = {146XW Times Cited:66 Cited References Count:45},
5477     Author = {J. L. Garcia-Palacios and F. J. Lazaro},
5478     Issn = {0163-1829},
5479     Journal = {Physical Review B},
5480     Month = {Dec 1},
5481     Number = {22},
5482     Pages = {14937-14958},
5483     Title = {Langevin-dynamics study of the dynamical properties of small magnetic particles},
5484     Uri = {<Go to ISI>://000077460000052},
5485     Volume = {58},
5486     Year = {1998}}
5487 tim 2746
5488 gezelter 3302 @article{Parr1995,
5489     Abstract = {Despite the parsing power of LR/LALR algorithms, e.g. YACC, programmers
5490 tim 2999 often choose to write recursive-descent parsers by hand to obtain
5491     increased flexibility, better error handling, and ease of debugging.
5492     We introduce ANTLR, a public-domain parser generator that combines
5493     the flexibility of hand-coded parsing with the convenience of a
5494     parser generator, which is a component of PCCTS. ANTLR has many
5495     features that make it easier to use than other language tools. Most
5496     important, ANTLR provides predicates which let the programmer systematically
5497     direct the parse via arbitrary expressions using semantic and syntactic
5498     context; in practice, the use of predicates eliminates the need
5499     to hand-tweak the ANTLR output, even for difficult parsing problems.
5500     ANTLR also integrates the description of lexical and syntactic analysis,
5501     accepts LL(k) grammars for k > 1 with extended BNF notation, and
5502     can automatically generate abstract syntax trees. ANTLR is widely
5503     used, with over 1000 registered industrial and academic users in
5504     37 countries. It has been ported to many popular systems such as
5505     the PC, Macintosh, and a variety of UNIX platforms; a commercial
5506     C++ front-end has been developed as a result of one of our industrial
5507     collaborations.},
5508 gezelter 3302 Annote = {Rk104 Times Cited:19 Cited References Count:10},
5509     Author = {T. J. Parr and R. W. Quong},
5510     Issn = {0038-0644},
5511     Journal = {Software-Practice \& Experience},
5512     Month = {Jul},
5513     Number = {7},
5514     Pages = {789-810},
5515     Title = {Antlr - a Predicated-Ll(K) Parser Generator},
5516     Uri = {<Go to ISI>://A1995RK10400004},
5517     Volume = {25},
5518     Year = {1995}}
5519 tim 2999
5520 gezelter 3302 @article{Pastor1988,
5521     Annote = {T1302 Times Cited:61 Cited References Count:26},
5522     Author = {R. W. Pastor and B. R. Brooks and A. Szabo},
5523     Issn = {0026-8976},
5524     Journal = {Molecular Physics},
5525     Month = {Dec 20},
5526     Number = {6},
5527     Pages = {1409-1419},
5528     Title = {An Analysis of the Accuracy of Langevin and Molecular-Dynamics Algorithms},
5529     Uri = {<Go to ISI>://A1988T130200011},
5530     Volume = {65},
5531     Year = {1988}}
5532 tim 2746
5533 gezelter 3302 @article{Pelzl1999,
5534     Annote = {220RC Times Cited:313 Cited References Count:49},
5535     Author = {G. Pelzl and S. Diele and W. Weissflog},
5536     Issn = {0935-9648},
5537     Journal = {Advanced Materials},
5538     Month = {Jul 5},
5539     Number = {9},
5540     Pages = {707-724},
5541     Title = {Banana-shaped compounds - A new field of liquid crystals},
5542     Uri = {<Go to ISI>://000081680400007},
5543     Volume = {11},
5544     Year = {1999}}
5545 tim 2999
5546 gezelter 3302 @article{Perram1985,
5547     Annote = {Akb93 Times Cited:71 Cited References Count:12},
5548     Author = {J. W. Perram and M. S. Wertheim},
5549     Issn = {0021-9991},
5550     Journal = {Journal of Computational Physics},
5551     Number = {3},
5552     Pages = {409-416},
5553     Title = {Statistical-Mechanics of Hard Ellipsoids .1. Overlap Algorithm and the Contact Function},
5554     Uri = {<Go to ISI>://A1985AKB9300008},
5555     Volume = {58},
5556     Year = {1985}}
5557 tim 2999
5558 gezelter 3302 @article{Rotne1969,
5559     Author = {F. Perrin},
5560     Journal = {J. Chem. Phys.},
5561     Pages = {4831-4837},
5562     Title = {Variational treatment of hydrodynamic interaction in polymers},
5563     Volume = {50},
5564     Year = {1969}}
5565 tim 2999
5566 gezelter 3302 @article{Perrin1936,
5567     Author = {F. Perrin},
5568     Journal = {J. Phys. Radium},
5569     Pages = {1-11},
5570     Title = {Mouvement brownien d'un ellipsoid(II). Rotation libre et depolarisation des fluorescences. Translation et diffusion de moleculese ellipsoidales},
5571     Volume = {7},
5572     Year = {1936}}
5573 tim 2999
5574 gezelter 3302 @article{Perrin1934,
5575     Author = {F. Perrin},
5576     Journal = {J. Phys. Radium},
5577     Pages = {497-511},
5578     Title = {Mouvement brownien d'un ellipsoid(I). Dispersion dielectrique pour des molecules ellipsoidales},
5579     Volume = {5},
5580     Year = {1934}}
5581 tim 2999
5582 gezelter 3302 @article{Petrache2000,
5583     Author = {H.~I. Petrache and S.~W. Dodd and M.~F. Brown},
5584     Journal = {Biophysical Journal},
5585     Pages = {3172-3192},
5586     Title = {Area per Lipid and Acyl Length Distributions in Fluid Phosphatidylcholines Determined by $^2\text{H}$ {\sc nmr} Spectroscopy},
5587     Volume = {79},
5588     Year = {2000}}
5589 tim 2999
5590 gezelter 3302 @article{Petrache1998,
5591     Abstract = {X-ray diffraction data taken at high instrumental resolution were
5592 tim 2999 obtained for EPC and DMPC under various osmotic pressures, primarily
5593     at T = 30 degrees C. The headgroup thickness D-HH was obtained from
5594     relative electron density profiles. By using volumetric results
5595     and by comparing to gel phase DPPC we obtain areas A(EPC)(F) = 69.4
5596     +/- 1.1 Angstrom(2) and A(DMPC)(F) = 59.7 +/- 0.2 Angstrom(2). The
5597     analysis also gives estimates for the areal compressibility K-A.
5598     The A(F) results lead to other structural results regarding membrane
5599     thickness and associated waters. Using the recently determined absolute
5600     electrons density profile of DPPC, the AF results also lead to absolute
5601     electron density profiles and absolute continuous transforms \F(q)\
5602     for EPC and DMPC, Limited measurements of temperature dependence
5603     show directly that fluctuations increase with increasing temperature
5604     and that a small decrease in bending modulus K-c accounts for the
5605     increased water spacing reported by Simon et al. (1995) Biophys.
5606     J. 69, 1473-1483. (C) 1998 Elsevier Science Ireland Ltd. All rights
5607     reserved.},
5608 gezelter 3302 Annote = {130AT Times Cited:98 Cited References Count:39},
5609     Author = {H. I. Petrache and S. Tristram-Nagle and J. F. Nagle},
5610     Issn = {0009-3084},
5611     Journal = {Chemistry and Physics of Lipids},
5612     Month = {Sep},
5613     Number = {1},
5614     Pages = {83-94},
5615     Title = {Fluid phase structure of EPC and DMPC bilayers},
5616     Uri = {<Go to ISI>://000076497600007},
5617     Volume = {95},
5618     Year = {1998}}
5619 tim 2999
5620 gezelter 3302 @article{Powles1973,
5621     Author = {J.~G. Powles},
5622     Journal = {Advan. Phys.},
5623     Pages = {1-56},
5624     Title = {A general ellipsoid can not always serve as a modle for the rotational diffusion properties of arbitrary shaped rigid molecules},
5625     Volume = {22},
5626     Year = {1973}}
5627 tim 2999
5628 gezelter 3302 @article{Recio2004,
5629     Abstract = {Protein recognition is one of the most challenging and intriguing
5630 tim 2999 problems in structural biology. Despite all the available structural,
5631     sequence and biophysical information about protein-protein complexes,
5632     the physico-chemical patterns, if any, that make a protein surface
5633     likely to be involved in protein-protein interactions, remain elusive.
5634     Here, we apply protein docking simulations and analysis of the interaction
5635     energy landscapes to identify protein-protein interaction sites.
5636     The new protocol for global docking based on multi-start global
5637     energy optimization of an allatom model of the ligand, with detailed
5638     receptor potentials and atomic solvation parameters optimized in
5639     a training set of 24 complexes, explores the conformational space
5640     around the whole receptor without restrictions. The ensembles of
5641     the rigid-body docking solutions generated by the simulations were
5642     subsequently used to project the docking energy landscapes onto
5643     the protein surfaces. We found that highly populated low-energy
5644     regions consistently corresponded to actual binding sites. The procedure
5645     was validated on a test set of 21 known protein-protein complexes
5646     not used in the training set. As much as 81% of the predicted high-propensity
5647     patch residues were located correctly in the native interfaces.
5648     This approach can guide the design of mutations on the surfaces
5649     of proteins, provide geometrical details of a possible interaction,
5650     and help to annotate protein surfaces in structural proteomics.
5651     (C) 2003 Elsevier Ltd. All rights reserved.},
5652 gezelter 3302 Annote = {763GQ Times Cited:21 Cited References Count:59},
5653     Author = {J. Fernandez-Recio and M. Totrov and R. Abagyan},
5654     Issn = {0022-2836},
5655     Journal = {Journal of Molecular Biology},
5656     Month = {Jan 16},
5657     Number = {3},
5658     Pages = {843-865},
5659     Title = {Identification of protein-protein interaction sites from docking energy landscapes},
5660     Uri = {<Go to ISI>://000188066900016},
5661     Volume = {335},
5662     Year = {2004}}
5663 tim 2746
5664 gezelter 3302 @article{Reddy2006,
5665     Abstract = {An overview on the recent developments in the field of liquid crystalline
5666 tim 2999 bent-core molecules (so-called banana liquid crystals) is given.
5667     After some basic issues, dealing with general aspects of the systematisation
5668     of the mesophases, development of polar order and chirality in this
5669     class of LC systems and explaining some general structure-property
5670     relationships, we focus on fascinating new developments in this
5671     field, such as modulated, undulated and columnar phases, so-called
5672     B7 phases, phase biaxiality, ferroelectric and antiferroelectric
5673     polar order in smectic and columnar phases, amplification and switching
5674     of chirality and the spontaneous formation of superstructural and
5675     supramolecular chirality.},
5676 gezelter 3302 Annote = {021NS Times Cited:2 Cited References Count:316},
5677     Author = {R. A. Reddy and C. Tschierske},
5678     Issn = {0959-9428},
5679     Journal = {Journal of Materials Chemistry},
5680     Number = {10},
5681     Pages = {907-961},
5682     Title = {Bent-core liquid crystals: polar order, superstructural chirality and spontaneous desymmetrisation in soft matter systems},
5683     Uri = {<Go to ISI>://000235990500001},
5684     Volume = {16},
5685     Year = {2006}}
5686 tim 2999
5687 gezelter 3302 @article{Reich1999,
5688     Abstract = {Backward error analysis has become an important tool for understanding
5689 tim 2999 the long time behavior of numerical integration methods. This is
5690     true in particular for the integration of Hamiltonian systems where
5691     backward error analysis can be used to show that a symplectic method
5692     will conserve energy over exponentially long periods of time. Such
5693     results are typically based on two aspects of backward error analysis:
5694     (i) It can be shown that the modified vector fields have some qualitative
5695     properties which they share with the given problem and (ii) an estimate
5696     is given for the difference between the best interpolating vector
5697     field and the numerical method. These aspects have been investigated
5698     recently, for example, by Benettin and Giorgilli in [J. Statist.
5699     Phys., 74 (1994), pp. 1117-1143], by Hairer in [Ann. Numer. Math.,
5700     1 (1994), pp. 107-132], and by Hairer and Lubich in [Numer. Math.,
5701     76 (1997), pp. 441-462]. In this paper we aim at providing a unifying
5702     framework and a simplification of the existing results and corresponding
5703     proofs. Our approach to backward error analysis is based on a simple
5704     recursive definition of the modified vector fields that does not
5705     require explicit Taylor series expansion of the numerical method
5706     and the corresponding flow maps as in the above-cited works. As
5707     an application we discuss the long time integration of chaotic Hamiltonian
5708     systems and the approximation of time averages along numerically
5709     computed trajectories.},
5710 gezelter 3302 Annote = {237HV Times Cited:43 Cited References Count:41},
5711     Author = {S. Reich},
5712     Issn = {0036-1429},
5713     Journal = {Siam Journal on Numerical Analysis},
5714     Month = {Sep 8},
5715     Number = {5},
5716     Pages = {1549-1570},
5717     Title = {Backward error analysis for numerical integrators},
5718     Uri = {<Go to ISI>://000082650600010},
5719     Volume = {36},
5720     Year = {1999}}
5721 tim 2999
5722 gezelter 3302 @article{Ros2005,
5723     Abstract = {The recent literature in the field of liquid crystals shows that banana-shaped
5724 tim 2999 mesogenic materials represent a bewitching and stimulating field
5725     of research that is interesting both academically and in terms of
5726     applications. Numerous topics are open to investigation in this
5727     area because of the rich phenomenology and new possibilities that
5728     these materials offer. The principal concepts in this area are reviewed
5729     along with recent results. In addition, new directions to stimulate
5730     further research activities are highlighted.},
5731 gezelter 3302 Annote = {990XA Times Cited:3 Cited References Count:72},
5732     Author = {M. B. Ros and J. L. Serrano and M. R. {de la Fuente} and C. L. Folcia},
5733     Issn = {0959-9428},
5734     Journal = {Journal of Materials Chemistry},
5735     Number = {48},
5736     Pages = {5093-5098},
5737     Title = {Banana-shaped liquid crystals: a new field to explore},
5738     Uri = {<Go to ISI>://000233775500001},
5739     Volume = {15},
5740     Year = {2005}}
5741 tim 2999
5742 gezelter 3302 @article{Roux1991,
5743     Abstract = {The mobility of water, Na+. and K+ has been calculated inside a periodic
5744 tim 2999 poly-(L,D)-alanine beta-helix, a model for the interior of the gramicidin
5745     channel. Because of the different dynamical regimes for the three
5746     species (high barrier for Na+, low barrier for K+, almost free diffusion
5747     for water), different methods are used to calculate the mobilities.
5748     By use of activated dynamics and a potential of mean force determined
5749     previously (Roux, B.; Karplus, M. Biophys. J. 1991, 59, 961), the
5750     barrier crossing rate of Na+ ion is determined. The motion of Na+
5751     at the transition state is controlled by local interactions and
5752     collisions with the neighboring carbonyls and the two nearest water
5753     molecules. There are significant deviations from transition-state
5754     theory; the transmission coefficient is equal to 0.11. The water
5755     and K+ motions are found to be well described by a diffusive model;
5756     the motion of K+ appears to be controlled by the diffusion of water.
5757     The time-dependent friction functions of Na+ and K+ ions in the
5758     periodic beta-helix are calculated and analyzed by using a generalized
5759     Langevin equation approach. Both Na+ and K+ suffer many rapid collisions,
5760     and their dynamics is overdamped and noninertial. Thus, the selectivity
5761     sequence of ions in the beta-helix is not influenced strongly by
5762     their masses.},
5763 gezelter 3302 Annote = {Fr756 Times Cited:97 Cited References Count:65},
5764     Author = {B. Roux and M. Karplus},
5765     Issn = {0022-3654},
5766     Journal = {Journal of Physical Chemistry},
5767     Month = {Jun 13},
5768     Number = {12},
5769     Pages = {4856-4868},
5770     Title = {Ion-Transport in a Gramicidin-Like Channel - Dynamics and Mobility},
5771     Uri = {<Go to ISI>://A1991FR75600049},
5772     Volume = {95},
5773     Year = {1991}}
5774 tim 2999
5775 gezelter 3302 @article{Roy2005,
5776     Abstract = {A vast majority of compounds with bent core or banana shaped molecules
5777 tim 2999 exhibit the phase sequence B-6-B-1-B-2 as the chain length is increased
5778     in a homologous series. The B-6 phase has an intercalated fluid
5779     lamellar structure with a layer spacing of half the molecular length.
5780     The B-1 phase has a two dimensionally periodic rectangular columnar
5781     structure. The B-2 phase has a monolayer fluid lamellar structure
5782     with molecules tilted with respect to the layer normal. Neglecting
5783     the tilt order of the molecules in the B-2 phase, we have developed
5784     a frustrated packing model to describe this phase sequence qualitatively.
5785     The model has some analogy with that of the frustrated smectics
5786     exhibited by highly polar rod like molecules.},
5787 gezelter 3302 Annote = {985FW Times Cited:0 Cited References Count:30},
5788     Author = {A. Roy and N. V. Madhusudana},
5789     Issn = {1292-8941},
5790     Journal = {European Physical Journal E},
5791     Month = {Nov},
5792     Number = {3},
5793     Pages = {253-258},
5794     Title = {A frustrated packing model for the B-6-B-1-SmAP(A) sequence of phases in banana shaped molecules},
5795     Uri = {<Go to ISI>://000233363300002},
5796     Volume = {18},
5797     Year = {2005}}
5798 tim 2999
5799 gezelter 3302 @article{Ryckaert1977,
5800     Annote = {Cz253 Times Cited:3680 Cited References Count:7},
5801     Author = {J. P. Ryckaert and G. Ciccotti and H. J. C. Berendsen},
5802     Issn = {0021-9991},
5803     Journal = {Journal of Computational Physics},
5804     Number = {3},
5805     Pages = {327-341},
5806     Title = {Numerical-Integration of Cartesian Equations of Motion of a System with Constraints - Molecular-Dynamics of N-Alkanes},
5807     Uri = {<Go to ISI>://A1977CZ25300007},
5808     Volume = {23},
5809     Year = {1977}}
5810 tim 2999
5811 gezelter 3302 @article{Sagui1999,
5812     Abstract = {Current computer simulations of biomolecules typically make use of
5813 tim 2999 classical molecular dynamics methods, as a very large number (tens
5814     to hundreds of thousands) of atoms are involved over timescales
5815     of many nanoseconds. The methodology for treating short-range bonded
5816     and van der Waals interactions has matured. However, long-range
5817     electrostatic interactions still represent a bottleneck in simulations.
5818     In this article, we introduce the basic issues for an accurate representation
5819     of the relevant electrostatic interactions. In spite of the huge
5820     computational time demanded by most biomolecular systems, it is
5821     no longer necessary to resort to uncontrolled approximations such
5822     as the use of cutoffs. In particular, we discuss the Ewald summation
5823     methods, the fast particle mesh methods, and the fast multipole
5824     methods. We also review recent efforts to understand the role of
5825     boundary conditions in systems with long-range interactions, and
5826     conclude with a short perspective on future trends.},
5827 gezelter 3302 Annote = {213KJ Times Cited:126 Cited References Count:73},
5828     Author = {C. Sagui and T. A. Darden},
5829     Issn = {1056-8700},
5830     Journal = {Annual Review of Biophysics and Biomolecular Structure},
5831     Pages = {155-179},
5832     Title = {Molecular dynamics simulations of biomolecules: Long-range electrostatic effects},
5833     Uri = {<Go to ISI>://000081271400008},
5834     Volume = {28},
5835     Year = {1999}}
5836 tim 2999
5837 gezelter 3302 @article{Sandu1999,
5838     Abstract = {Numerical resonance artifacts have become recognized recently as a
5839 tim 2999 limiting factor to increasing the timestep in multiple-timestep
5840     (MTS) biomolecular dynamics simulations. At certain timesteps correlated
5841     to internal motions (e.g., 5 fs, around half the period of the fastest
5842     bond stretch, T-min), visible inaccuracies or instabilities can
5843     occur. Impulse-MTS schemes are vulnerable to these resonance errors
5844     since large energy pulses are introduced to the governing dynamics
5845     equations when the slow forces are evaluated. We recently showed
5846     that such resonance artifacts can be masked significantly by applying
5847     extrapolative splitting to stochastic dynamics. Theoretical and
5848     numerical analyses of force-splitting integrators based on the Verlet
5849     discretization are reported here for linear models to explain these
5850     observations and to suggest how to construct effective integrators
5851     for biomolecular dynamics that balance stability with accuracy.
5852     Analyses for Newtonian dynamics demonstrate the severe resonance
5853     patterns of the Impulse splitting, with this severity worsening
5854     with the outer timestep. Delta t: Constant Extrapolation is generally
5855     unstable, but the disturbances do not grow with Delta t. Thus. the
5856     stochastic extrapolative combination can counteract generic instabilities
5857     and largely alleviate resonances with a sufficiently strong Langevin
5858     heat-bath coupling (gamma), estimates for which are derived here
5859     based on the fastest and slowest motion periods. These resonance
5860     results generally hold for nonlinear test systems: a water tetramer
5861     and solvated protein. Proposed related approaches such as Extrapolation/Correction
5862     and Midpoint Extrapolation work better than Constant Extrapolation
5863     only for timesteps less than T-min/2. An effective extrapolative
5864     stochastic approach for biomolecules that balances long-timestep
5865     stability with good accuracy for the fast subsystem is then applied
5866     to a biomolecule using a three-class partitioning: the medium forces
5867     are treated by Midpoint Extrapolation via position Verlet, and the
5868     slow forces are incorporated by Constant Extrapolation. The resulting
5869     algorithm (LN) performs well on a solvated protein system in terms
5870     of thermodynamic properties and yields an order of magnitude speedup
5871     with respect to single-timestep Langevin trajectories. Computed
5872     spectral density functions also show how the Newtonian modes can
5873     be approximated by using a small gamma in the range Of 5-20 ps(-1).
5874     (C) 1999 Academic Press.},
5875 gezelter 3302 Annote = {194FM Times Cited:14 Cited References Count:32},
5876     Author = {A. Sandu and T. Schlick},
5877     Issn = {0021-9991},
5878     Journal = {Journal of Computational Physics},
5879     Month = {May 1},
5880     Number = {1},
5881     Pages = {74-113},
5882     Title = {Masking resonance artifacts in force-splitting methods for biomolecular simulations by extrapolative Langevin dynamics},
5883     Uri = {<Go to ISI>://000080181500004},
5884     Volume = {151},
5885     Year = {1999}}
5886 tim 2746
5887 gezelter 3302 @article{Sasaki2004,
5888     Abstract = {Tris(2-aminoethyl) amine derivatives with appended urea and sulfonamide
5889 tim 2999 groups are shown to facilitate the translocation of fluorescent
5890     phospholipid probes and endogenous phosphatidylserine across vesicle
5891     and erythrocyte cell membranes. The synthetic translocases appear
5892     to operate by binding to the phospholipid head groups and forming
5893     lipophilic supramolecular complexes which diffuse through the non-polar
5894     interior of the bilayer membrane.},
5895 gezelter 3302 Annote = {760PX Times Cited:8 Cited References Count:25},
5896     Author = {Y. Sasaki and R. Shukla and B. D. Smith},
5897     Issn = {1477-0520},
5898     Journal = {Organic \& Biomolecular Chemistry},
5899     Number = {2},
5900     Pages = {214-219},
5901     Title = {Facilitated phosphatidylserine flip-flop across vesicle and cell membranes using urea-derived synthetic translocases},
5902     Uri = {<Go to ISI>://000187843800012},
5903     Volume = {2},
5904     Year = {2004}}
5905 tim 2999
5906 gezelter 3302 @article{Satoh1996,
5907     Abstract = {The effects of dipole-dipole interaction on mesophase formation are
5908 tim 2999 investigated with a Monte Carlo simulation using the dipolar Gay-Berne
5909     potential. It is shown that the dipole moment at the end of a molecule
5910     causes a shift in the nematic-isotropic transition toward higher
5911     temperature and a spread of the temperature range of the nematic
5912     phase and that layer structures with various interdigitations are
5913     formed in the smectic phase.},
5914 gezelter 3302 Annote = {Uq975 Times Cited:32 Cited References Count:33},
5915     Author = {K. Satoh and S. Mita and S. Kondo},
5916     Issn = {0009-2614},
5917     Journal = {Chemical Physics Letters},
5918     Month = {Jun 7},
5919     Number = {1-3},
5920     Pages = {99-104},
5921     Title = {Monte Carlo simulations using the dipolar Gay-Berne model: Effect of terminal dipole moment on mesophase formation},
5922     Uri = {<Go to ISI>://A1996UQ97500017},
5923     Volume = {255},
5924     Year = {1996}}
5925 tim 2999
5926 gezelter 3302 @article{Schaps1999,
5927     Annote = {163EC Times Cited:0 Cited References Count:0},
5928     Author = {G. L. Schaps},
5929     Issn = {1044-789X},
5930     Journal = {Dr Dobbs Journal},
5931     Month = {Mar},
5932     Number = {3},
5933     Pages = {84-+},
5934     Title = {Compiler construction with ANTLR and Java - Tools for building tools},
5935     Uri = {<Go to ISI>://000078389200023},
5936     Volume = {24},
5937     Year = {1999}}
5938 tim 2999
5939 gezelter 3302 @article{Shen2002,
5940     Abstract = {Met-enkephalin is one of the smallest opiate peptides. Yet, its dynamical
5941 tim 2999 structure and receptor docking mechanism are still not well understood.
5942     The conformational dynamics of this neuron peptide in liquid water
5943     are studied here by using all-atom molecular dynamics (MID) and
5944     implicit water Langevin dynamics (LD) simulations with AMBER potential
5945     functions and the three-site transferable intermolecular potential
5946     (TIP3P) model for water. To achieve the same simulation length in
5947     physical time, the full MID simulations require 200 times as much
5948     CPU time as the implicit water LID simulations. The solvent hydrophobicity
5949     and dielectric behavior are treated in the implicit solvent LD simulations
5950     by using a macroscopic solvation potential, a single dielectric
5951     constant, and atomic friction coefficients computed using the accessible
5952     surface area method with the TIP3P model water viscosity as determined
5953     here from MID simulations for pure TIP3P water. Both the local and
5954     the global dynamics obtained from the implicit solvent LD simulations
5955     agree very well with those from the explicit solvent MD simulations.
5956     The simulations provide insights into the conformational restrictions
5957     that are associated with the bioactivity of the opiate peptide dermorphin
5958     for the delta-receptor.},
5959 gezelter 3302 Annote = {540MH Times Cited:36 Cited References Count:45},
5960     Author = {M. Y. Shen and K. F. Freed},
5961     Issn = {0006-3495},
5962     Journal = {Biophysical Journal},
5963     Month = {Apr},
5964     Number = {4},
5965     Pages = {1791-1808},
5966     Title = {Long time dynamics of met-enkephalin: Comparison of explicit and implicit solvent models},
5967     Uri = {<Go to ISI>://000174932400010},
5968     Volume = {82},
5969     Year = {2002}}
5970 tim 2746
5971 gezelter 3302 @article{Shillcock2005,
5972     Annote = {901QJ Times Cited:9 Cited References Count:23},
5973     Author = {J. C. Shillcock and R. Lipowsky},
5974     Issn = {1476-1122},
5975     Journal = {Nature Materials},
5976     Month = {Mar},
5977     Number = {3},
5978     Pages = {225-228},
5979     Title = {Tension-induced fusion of bilayer membranes and vesicles},
5980     Uri = {<Go to ISI>://000227296700019},
5981     Volume = {4},
5982     Year = {2005}}
5983 tim 2746
5984 gezelter 3302 @article{Shimada1993,
5985     Abstract = {To make improved treatments of electrostatic interactions in biomacromolecular
5986 tim 2999 simulations, two possibilities are considered. The first is the
5987     famous particle-particle and particle-mesh (PPPM) method developed
5988     by Hockney and Eastwood, and the second is a new one developed here
5989     in their spirit but by the use of the multipole expansion technique
5990     suggested by Ladd. It is then numerically found that the new PPPM
5991     method gives more accurate results for a two-particle system at
5992     small separation of particles. Preliminary numerical examination
5993     of the various computational methods for a single configuration
5994     of a model BPTI-water system containing about 24,000 particles indicates
5995     that both of the PPPM methods give far more accurate values with
5996     reasonable computational cost than do the conventional truncation
5997     methods. It is concluded the two PPPM methods are nearly comparable
5998     in overall performance for the many-particle systems, although the
5999     first method has the drawback that the accuracy in the total electrostatic
6000     energy is not high for configurations of charged particles randomly
6001     generated.},
6002 gezelter 3302 Annote = {Lh164 Times Cited:27 Cited References Count:47},
6003     Author = {J. Shimada and H. Kaneko and T. Takada},
6004     Issn = {0192-8651},
6005     Journal = {Journal of Computational Chemistry},
6006     Month = {Jul},
6007     Number = {7},
6008     Pages = {867-878},
6009     Title = {Efficient Calculations of Coulombic Interactions in Biomolecular Simulations with Periodic Boundary-Conditions},
6010     Uri = {<Go to ISI>://A1993LH16400011},
6011     Volume = {14},
6012     Year = {1993}}
6013 tim 2999
6014 gezelter 3302 @article{Skeel2002,
6015     Abstract = {The best simple method for Newtonian molecular dynamics is indisputably
6016 tim 2999 the leapfrog Stormer-Verlet method. The appropriate generalization
6017     to simple Langevin dynamics is unclear. An analysis is presented
6018     comparing an 'impulse method' (kick; fluctuate; kick), the 1982
6019     method of van Gunsteren and Berendsen, and the Brunger-Brooks-Karplus
6020     (BBK) method. It is shown how the impulse method and the van Gunsteren-Berendsen
6021     methods can be implemented as efficiently as the BBK method. Other
6022     considerations suggest that the impulse method is the best basic
6023     method for simple Langevin dynamics, with the van Gunsteren-Berendsen
6024     method a close contender.},
6025 gezelter 3302 Annote = {633RX Times Cited:8 Cited References Count:22},
6026     Author = {R. D. Skeel and J. A. Izaguirre},
6027     Issn = {0026-8976},
6028     Journal = {Molecular Physics},
6029     Month = {Dec 20},
6030     Number = {24},
6031     Pages = {3885-3891},
6032     Title = {An impulse integrator for Langevin dynamics},
6033     Uri = {<Go to ISI>://000180297200014},
6034     Volume = {100},
6035     Year = {2002}}
6036 tim 2746
6037 gezelter 3302 @article{Skeel1997,
6038     Abstract = {The following integration methods for special second-order ordinary
6039 tim 2999 differential equations are studied: leapfrog, implicit midpoint,
6040     trapezoid, Stormer-Verlet, and Cowell-Numerov. We show that all
6041     are members, or equivalent to members, of a one-parameter family
6042     of schemes. Some methods have more than one common form, and we
6043     discuss a systematic enumeration of these forms. We also present
6044     a stability and accuracy analysis based on the idea of ''modified
6045     equations'' and a proof of symplecticness. It follows that Cowell-Numerov
6046     and ''LIM2'' (a method proposed by Zhang and Schlick) are symplectic.
6047     A different interpretation of the values used by these integrators
6048     leads to higher accuracy and better energy conservation. Hence,
6049     we suggest that the straightforward analysis of energy conservation
6050     is misleading.},
6051 gezelter 3302 Annote = {We981 Times Cited:30 Cited References Count:35},
6052     Author = {R. D. Skeel and G. H. Zhang and T. Schlick},
6053     Issn = {1064-8275},
6054     Journal = {Siam Journal on Scientific Computing},
6055     Month = {Jan},
6056     Number = {1},
6057     Pages = {203-222},
6058     Title = {A family of symplectic integrators: Stability, accuracy, and molecular dynamics applications},
6059     Uri = {<Go to ISI>://A1997WE98100012},
6060     Volume = {18},
6061     Year = {1997}}
6062 tim 2746
6063 gezelter 3302 @article{Tao2005,
6064     Abstract = {Recently a microscopic theory for the dynamics of suspensions of long
6065 tim 2999 thin rigid rods was presented, confirming and expanding the well-known
6066     theory by Doi and Edwards [The Theory of Polymer Dynamics (Clarendon,
6067     Oxford, 1986)] and Kuzuu [J. Phys. Soc. Jpn. 52, 3486 (1983)]. Here
6068     this theory is put to the test by comparing it against computer
6069     simulations. A Brownian dynamics simulation program was developed
6070     to follow the dynamics of the rods, with a length over a diameter
6071     ratio of 60, on the Smoluchowski time scale. The model accounts
6072     for excluded volume interactions between rods, but neglects hydrodynamic
6073     interactions. The self-rotational diffusion coefficients D-r(phi)
6074     of the rods were calculated by standard methods and by a new, more
6075     efficient method based on calculating average restoring torques.
6076     Collective decay of orientational order was calculated by means
6077     of equilibrium and nonequilibrium simulations. Our results show
6078     that, for the currently accessible volume fractions, the decay times
6079     in both cases are virtually identical. Moreover, the observed decay
6080     of diffusion coefficients with volume fraction is much quicker than
6081     predicted by the theory, which is attributed to an oversimplification
6082     of dynamic correlations in the theory. (c) 2005 American Institute
6083     of Physics.},
6084 gezelter 3302 Annote = {943DN Times Cited:3 Cited References Count:26},
6085     Author = {Y. G. Tao and W. K. {den Otter} and J. T. Padding and J. K. G. Dhont and W. J. Briels},
6086     Issn = {0021-9606},
6087     Journal = {Journal of Chemical Physics},
6088     Month = {Jun 22},
6089     Number = {24},
6090     Pages = {-},
6091     Title = {Brownian dynamics simulations of the self- and collective rotational diffusion coefficients of rigid long thin rods},
6092     Uri = {<Go to ISI>://000230332400077},
6093     Volume = {122},
6094     Year = {2005}}
6095 tim 2746
6096 gezelter 3302 @book{Tolman1979,
6097     Address = {New York},
6098     Author = {R.~C. Tolman},
6099     Chapter = {2},
6100     Pages = {19-22},
6101     Publisher = {Dover Publications, Inc.},
6102     Title = {The Principles of Statistical Mechanics},
6103     Year = {1979}}
6104 tim 2999
6105 gezelter 3302 @article{Tu1995,
6106     Abstract = {We report a constant pressure and temperature molecular dynamics simulation
6107 tim 2999 of a fully hydrated liquid crystal (L(alpha) phase bilayer of dipalmitoylphosphatidylcholine
6108     at 50 degrees C and 28 water molecules/lipid. We have shown that
6109     the bilayer is stable throughout the 1550-ps simulation and have
6110     demonstrated convergence of the system dimensions. Several important
6111     aspects of the bilayer structure have been investigated and compared
6112     favorably with experimental results. For example, the average positions
6113     of specific carbon atoms along the bilayer normal agree well with
6114     neutron diffraction data, and the electron density profile is in
6115     accord with x-ray diffraction results. The hydrocarbon chain deuterium
6116     order parameters agree reasonably well with NMR results for the
6117     middles of the chains, but the simulation predicts too much order
6118     at the chain ends. In spite of the deviations in the order parameters,
6119     the hydrocarbon chain packing density appears to be essentially
6120     correct, inasmuch as the area/lipid and bilayer thickness are in
6121     agreement with the most refined experimental estimates. The deuterium
6122     order parameters for the glycerol and choline groups, as well as
6123     the phosphorus chemical shift anisotropy, are in qualitative agreement
6124     with those extracted from NMR measurements.},
6125 gezelter 3302 Annote = {Tv018 Times Cited:108 Cited References Count:34},
6126     Author = {K. Tu and D. J. Tobias and M. L. Klein},
6127     Issn = {0006-3495},
6128     Journal = {Biophysical Journal},
6129     Month = {Dec},
6130     Number = {6},
6131     Pages = {2558-2562},
6132     Title = {Constant pressure and temperature molecular dynamics simulation of a fully hydrated liquid crystal phase dipalmitoylphosphatidylcholine bilayer},
6133     Uri = {<Go to ISI>://A1995TV01800037},
6134     Volume = {69},
6135     Year = {1995}}
6136 tim 2999
6137 gezelter 3302 @article{Tuckerman1992,
6138     Abstract = {The Trotter factorization of the Liouville propagator is used to generate
6139 tim 2999 new reversible molecular dynamics integrators. This strategy is
6140     applied to derive reversible reference system propagator algorithms
6141     (RESPA) that greatly accelerate simulations of systems with a separation
6142     of time scales or with long range forces. The new algorithms have
6143     all of the advantages of previous RESPA integrators but are reversible,
6144     and more stable than those methods. These methods are applied to
6145     a set of paradigmatic systems and are shown to be superior to earlier
6146     methods. It is shown how the new RESPA methods are related to predictor-corrector
6147     integrators. Finally, we show how these methods can be used to accelerate
6148     the integration of the equations of motion of systems with Nose
6149     thermostats.},
6150 gezelter 3302 Annote = {Je891 Times Cited:680 Cited References Count:19},
6151     Author = {M. Tuckerman and B. J. Berne and G. J. Martyna},
6152     Issn = {0021-9606},
6153     Journal = {Journal of Chemical Physics},
6154     Month = {Aug 1},
6155     Number = {3},
6156     Pages = {1990-2001},
6157     Title = {Reversible Multiple Time Scale Molecular-Dynamics},
6158     Uri = {<Go to ISI>://A1992JE89100044},
6159     Volume = {97},
6160     Year = {1992}}
6161 tim 2746
6162 gezelter 3302 @book{Varadarajan1974,
6163     Address = {New York},
6164     Author = {V.S. Varadarajan},
6165     Publisher = {Prentice-Hall},
6166     Title = {Lie groups, Lie algebras, and their representations},
6167     Year = {1974}}
6168 tim 2999
6169 gezelter 3302 @article{Vincent1995,
6170     Abstract = {We have implemented a portable parallel version of the macromolecular
6171 tim 2999 modeling package AMBER4. The message passing paradigm was used.
6172     All message passing constructs are compliant with the Message Passing
6173     Interface (MPI) standard. The molecular dynamics/minimization module
6174     MINMD and the free-energy perturbation module Gibbs have been implemented
6175     in parallel on a number of machines, including a Gray T3D, an IBM
6176     SP1/SP2, and a collection of networked workstations. In addition,
6177     the code has been tested with an MPI implementation from Argonne
6178     National Laboratories/Mississippi State University which runs on
6179     many parallel machines. The goal of this work is to decrease the
6180     amount of time required to perform molecular dynamics simulations.
6181     Performance results for a Lipid bilayer molecular dynamics simulation
6182     on a Gray T3D, an IBM SP1/SPZ and a Gray C90 are compared. (C) 1995
6183     by John Wiley & Sons, Inc.},
6184 gezelter 3302 Annote = {Ta403 Times Cited:16 Cited References Count:23},
6185     Author = {J. J. Vincent and K. M. Merz},
6186     Issn = {0192-8651},
6187     Journal = {Journal of Computational Chemistry},
6188     Month = {Nov},
6189     Number = {11},
6190     Pages = {1420-1427},
6191     Title = {A Highly Portable Parallel Implementation of Amber4 Using the Message-Passing Interface Standard},
6192     Uri = {<Go to ISI>://A1995TA40300009},
6193     Volume = {16},
6194     Year = {1995}}
6195 tim 2999
6196 gezelter 3302 @article{Wegener1979,
6197     Author = {W.~A. Wegener, V.~J. Koester and R.~M. Dowben},
6198     Journal = {Proc. Natl. Acad. Sci.},
6199     Number = {12},
6200     Pages = {6356-6360},
6201     Title = {A general ellipsoid can not always serve as a modle for the rotational diffusion properties of arbitrary shaped rigid molecules},
6202     Volume = {76},
6203     Year = {1979}}
6204 tim 2999
6205 gezelter 3302 @article{Wilson2006,
6206     Author = {G.~V. Wilson},
6207     Journal = {American Scientist},
6208     Title = {Where's the Real Bottleneck in Scientific Computing?},
6209     Volume = {94},
6210     Year = {2006}}
6211 tim 2999
6212 gezelter 3302 @article{Withers2003,
6213     Abstract = {The effects of longitudinal quadrupole moments on the formation of
6214 tim 2999 liquid crystalline phases are studied by means of constant NPT Monte
6215     Carlo simulation methods. The popular Gay-Berne model mesogen is
6216     used as the reference fluid, which displays the phase sequences
6217     isotropic-smectic A-smectic B and isotropic-smectic B at high (T*=2.0)
6218     and low (T*=1.5) temperatures, respectively. With increasing quadrupole
6219     magnitude the smectic phases are observed to be stabilized with
6220     respect to the isotropic liquid, while the smectic B is destabilized
6221     with respect to the smectic A. At the lower temperature, a sufficiently
6222     large quadrupole magnitude results in the injection of the smectic
6223     A phase into the phase sequence and the replacement of the smectic
6224     B phase by the tilted smectic J phase. The nematic phase is also
6225     injected into the phase sequence at both temperatures considered,
6226     and ultimately for sufficiently large quadrupole magnitudes no coherent
6227     layered structures were observed. The stabilization of the smectic
6228     A phase supports the commonly held belief that, while the inclusion
6229     of polar groups is not a prerequisite for the formation of the smectic
6230     A phase, quadrupolar interactions help to increase the temperature
6231     and pressure range for which the smectic A phase is observed. The
6232     quality of the layered structure is worsened with increasing quadrupole
6233     magnitude. This behavior, along with the injection of the nematic
6234     phase into the phase sequence, indicate that the general tendency
6235     of the quadrupolar interactions is to destabilize the layered structure.
6236     A pressure dependence upon the smectic layer spacing is observed.
6237     This behavior is in much closer agreement with experimental findings
6238     than has been observed previously for nonpolar Gay-Berne and hard
6239     spherocylinder models. (C) 2003 American Institute of Physics.},
6240 gezelter 3302 Annote = {738EF Times Cited:3 Cited References Count:43},
6241     Author = {I. M. Withers},
6242     Issn = {0021-9606},
6243     Journal = {Journal of Chemical Physics},
6244     Month = {Nov 15},
6245     Number = {19},
6246     Pages = {10209-10223},
6247     Title = {Effects of longitudinal quadrupoles on the phase behavior of a Gay-Berne fluid},
6248     Uri = {<Go to ISI>://000186273200027},
6249     Volume = {119},
6250     Year = {2003}}
6251 tim 2999
6252 gezelter 3302 @article{Wolf1999,
6253     Abstract = {Based on a recent result showing that the net Coulomb potential in
6254 tim 2999 condensed ionic systems is rather short ranged, an exact and physically
6255     transparent method permitting the evaluation of the Coulomb potential
6256     by direct summation over the r(-1) Coulomb pair potential is presented.
6257     The key observation is that the problems encountered in determining
6258     the Coulomb energy by pairwise, spherically truncated r(-1) summation
6259     are a direct consequence of the fact that the system summed over
6260     is practically never neutral. A simple method is developed that
6261     achieves charge neutralization wherever the r(-1) pair potential
6262     is truncated. This enables the extraction of the Coulomb energy,
6263     forces, and stresses from a spherically truncated, usually charged
6264     environment in a manner that is independent of the grouping of the
6265     pair terms. The close connection of our approach with the Ewald
6266     method is demonstrated and exploited, providing an efficient method
6267     for the simulation of even highly disordered ionic systems by direct,
6268     pairwise r(-1) summation with spherical truncation at rather short
6269     range, i.e., a method which fully exploits the short-ranged nature
6270     of the interactions in ionic systems. The method is validated by
6271     simulations of crystals, liquids, and interfacial systems, such
6272     as free surfaces and grain boundaries. (C) 1999 American Institute
6273     of Physics. [S0021-9606(99)51517-1].},
6274 gezelter 3302 Annote = {189PD Times Cited:70 Cited References Count:34},
6275     Author = {D. Wolf and P. Keblinski and S. R. Phillpot and J. Eggebrecht},
6276     Issn = {0021-9606},
6277     Journal = {Journal of Chemical Physics},
6278     Month = {May 1},
6279     Number = {17},
6280     Pages = {8254-8282},
6281     Title = {Exact method for the simulation of Coulombic systems by spherically truncated, pairwise r(-1) summation},
6282     Uri = {<Go to ISI>://000079913000008},
6283     Volume = {110},
6284     Year = {1999}}
6285 tim 2999
6286 gezelter 3302 @article{Yoshida1990,
6287     Annote = {Ej798 Times Cited:492 Cited References Count:9},
6288     Author = {H. Yoshida},
6289     Issn = {0375-9601},
6290     Journal = {Physics Letters A},
6291     Month = {Nov 12},
6292     Number = {5-7},
6293     Pages = {262-268},
6294     Title = {Construction of Higher-Order Symplectic Integrators},
6295     Uri = {<Go to ISI>://A1990EJ79800009},
6296     Volume = {150},
6297     Year = {1990}}
6298 tim 2999
6299 gezelter 3302 @article{Blum1972,
6300     Author = {L. Blum and A.~J. Torruella},
6301     Journal = {Journal of Chemical Physics},
6302     Number = 1,
6303     Pages = {303-309},
6304     Title = {Computer simulations of bilayer membranes: Self-assembly and interfacial tension},
6305     Volume = 56,
6306     Year = 1972}
6307 tim 2999
6308 gezelter 3302 @article{Stone1978,
6309     Author = {A.~J. Stone},
6310     Journal = {Molecular Physics},
6311     Number = 1,
6312     Pages = {241-256},
6313     Title = {The description of bimolecular potentials, forces and torques: the S and V function expansions},
6314     Volume = 36,
6315     Year = 1978}
6316 tim 2999
6317 gezelter 3302 @article{Berardi2003,
6318     Author = {R. Berardi, M. Cecchini and C. Zannoni},
6319     Journal = {Journal of Chemical Physics},
6320     Number = 18,
6321     Pages = {9933-9946},
6322     Title = {A Monte Carlo study of the chiral columnar organizations of dissymmetric discotic mesogens},
6323     Volume = 119,
6324     Year = 2003}
6325 tim 2999
6326 gezelter 3302 @article{Beard2000,
6327     Author = {D. A. Beard and T. Schlick},
6328     Journal = {Journal of Chemical Physics},
6329     Number = 17,
6330     Pages = {7313-7322},
6331     Title = {Inertial Stochastic Dynamics. I. Long-time-step Methods for Langevin Dynamics},
6332     Volume = 112,
6333     Year = 2000}
6334 tim 2999
6335 gezelter 3302 @book{Hirsch1997,
6336     Address = {New York},
6337     Author = {M.W. Hirsch},
6338     Publisher = {Springer},
6339     Title = {Differential Topology},
6340     Year = {1997}}
6341 tim 2999
6342 gezelter 3302 @book{Jost2002,
6343     Address = {Berlin},
6344     Author = {J. Jost},
6345     Publisher = {Springer-Verlag},
6346     Title = {Riemannian Geometry and Geometric Analysis},
6347     Year = {2002}}
6348 tim 2999
6349 gezelter 3302 @book{McDuff1998,
6350     Address = {Oxford},
6351     Author = {D. McDuff and D. Salamon},
6352     Publisher = {Oxford Mathematical Monographs},
6353     Title = {Introduction to Symplectic Topology},
6354     Year = {1998}}
6355 tim 2999
6356 gezelter 3302 @article{Matubayasi1999,
6357     Author = {N. Matubayasi and M. Nakahara},
6358     Journal = {Journal of Chemical Physics},
6359     Number = 7,
6360     Pages = {3291-3301},
6361     Title = {Reversible molecular dynamics for rigid bodies and hybrid Monte Carlo},
6362     Volume = 110,
6363     Year = 1999}
6364 tim 2999
6365 gezelter 3302 @article{Miller2002,
6366     Author = {T.F. Miller III, M. Eleftheriou},
6367     Journal = {Journal of Chemical Physics},
6368     Number = 20,
6369     Pages = {8649-8659},
6370     Title = {Symplectic quaternion scheme for biophysical molecular dynamics},
6371     Volume = 116,
6372     Year = 1999}
6373 tim 2999
6374 gezelter 3302 @article{McMillan1971,
6375     Author = {W.L. McMillan},
6376     Journal = {Journal of Chemical Physics},
6377     Number = 3,
6378     Pages = {1238-1246},
6379     Title = {Simple Molecular Model for the Smectic A Phase of Liquid Crystals},
6380     Volume = 4,
6381     Year = 1971}
6382 tim 2999
6383 gezelter 3302 @article{Gilmore1974,
6384     Author = {R. Gilmore},
6385     Journal = {Journal of Mathematical Physics},
6386     Number = 12,
6387     Pages = {2090-2092},
6388     Title = {Baker-Campbell-Hausdorff Formulas},
6389     Volume = 15,
6390     Year = 1974}
6391 tim 2999
6392 gezelter 3302 @article{Strang1968,
6393     Author = {G. Strang},
6394     Journal = {SIAM Journal on Numerical Analysis},
6395     Number = 3,
6396     Pages = {506-517},
6397     Title = {On the construction and comparision of difference schemes},
6398     Volume = 5,
6399     Year = 1968}
6400 tim 2999
6401 gezelter 3302 @article{Trotter1959,
6402     Author = {H.F. Trotter},
6403     Journal = {SIAM Journal on Numerical Analysis},
6404     Number = 14,
6405     Pages = {545-551},
6406     Title = {On the product of semi-groups of operators},
6407     Volume = 10,
6408     Year = 1959}
6409 tim 2999
6410 gezelter 3302 @article{Cartwright1992,
6411     Author = {J.H.E. Cartwright and O. Piro},
6412     Journal = {International Journal of Bifurcation and Chaos},
6413     Number = 3,
6414     Pages = {427-449},
6415     Title = {The Dynamics of Runge-Kutta Methods},
6416     Volume = 2,
6417     Year = 1992}