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\citation{Gray84} |
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\citation{Hardouin80} |
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\citation{Collings97} |
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\citation{Collings97} |
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\citation{Levelut81a} |
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\citation{Levelut81b} |
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\citation{Gray84} |
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\citation{Levelut81a} |
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\citation{Levelut81b} |
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\citation{Jeu83} |
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\citation{Photinos76} |
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\citation{Vanakaras98} |
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\citation{Prost84} |
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\citation{Prost80} |
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\citation{Jeu83} |
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\citation{Meyer76} |
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\citation{Dowell85} |
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\citation{Indekeu86} |
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\citation{Baus89} |
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\citation{Netz92} |
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\newlabel{FirstPage}{{}{1}{}{}{}} |
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\@writefile{toc}{\contentsline {section}{\numberline {I}Introduction}{1}{}} |
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\newlabel{sec:intro}{{I}{1}{}{}{}} |
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\@writefile{toc}{\contentsline {subsection}{\numberline {A}Previous Experimental Work}{1}{}} |
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\@writefile{toc}{\contentsline {subsection}{\numberline {B}Previous theoretical work}{1}{}} |
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\citation{Levesque93} |
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\citation{Gay81} |
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\citation{Berne72} |
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\citation{Kushick76} |
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\citation{Luckhurst90} |
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\citation{Perram96} |
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\citation{Gay81} |
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\citation{Berne72} |
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\citation{Zannonibook2000} |
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\citation{Berardi96} |
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\citation{Satoh96} |
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\citation{Pasterny2000} |
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\citation{Berardi99} |
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\citation{Fukunaga2004} |
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\@writefile{toc}{\contentsline {section}{\numberline {II}Model}{2}{}} |
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\newlabel{sec:model}{{II}{2}{}{}{}} |
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\newlabel{eq:gb}{{1}{2}{}{}{}} |
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\newlabel{eq:chi}{{3}{2}{}{}{}} |
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\@writefile{toc}{\contentsline {section}{\numberline {III}Computational Methodology}{3}{}} |
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\@writefile{lof}{\contentsline {figure}{\numberline {1}{\ignorespaces The molecular models studied in this work. All are prolate Gay-Berne ellipsoids which have point dipoles embedded centrally or terminally within the molecular bodies. System A is a molecular-scale model for XXXX, System B is a model of YYYY, and System C could be considered a model for phosphatidylcholine (PC) lipids. Details on the dipolar locations and strengths are given in the text.}}{3}{}} |
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\newlabel{fig:gbdp}{{1}{3}{}{}{}} |
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\citation{Allen87} |
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\@writefile{toc}{\contentsline {section}{\numberline {IV}Results and Conclusion}{4}{}} |
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\newlabel{sec:results and conclusion}{{IV}{4}{}{}{}} |
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\@writefile{lof}{\contentsline {figure}{\numberline {2}{\ignorespaces Density projection of molecular centres (solid) and terminal dipoles (broken) with respect to the director g(z) for a system of G-B molecules with two transverse outward pointing dipoles, the first dipole having $d^{*}=1.0$, $\mu ^{*}=1.0$ and the second dipole having $d^{*}=0.0$, $\mu ^{*}=0.5$}}{4}{}} |
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\newlabel{fig:1}{{2}{4}{}{}{}} |
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\@writefile{lof}{\contentsline {figure}{\numberline {3}{\ignorespaces Density projection of molecular centres (solid) and terminal dipoles (broken) with respect to the director g(z) for a system of G-B molecules with two antiparallel longitudinal dipoles, the first outward pointing dipole having $d^{*}=1.0$, $\mu ^{*}=1.0$ and the second dipole having $d^{*}=0.0$, $\mu ^{*}=0.5$}}{4}{}} |
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\newlabel{fig:2}{{3}{4}{}{}{}} |
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\@writefile{lof}{\contentsline {figure}{\numberline {4}{\ignorespaces Density projection of molecular centres (solid) and terminal dipoles (broken) with respect to the director g(z) for a system of G-B molecules with single transverse outward pointing dipole, having $d^{*}=1.0$, $\mu ^{*}=1.0$}}{5}{}} |
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\newlabel{fig:3}{{4}{5}{}{}{}} |
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\@writefile{lof}{\contentsline {figure}{\numberline {5}{\ignorespaces Typical configuration for a system of 864 G-B molecules with two transverse dipoles, the first dipole having $d^{*}=1.0$, $\mu ^{*}=1.0$ and the second dipole having $d^{*}=0.0$, $\mu ^{*}=0.5$. The white caps indicate the location of the terminal dipole, while the orientation of the dipoles is indicated by the blue/gold coloring.}}{5}{}} |
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\newlabel{fig:4}{{5}{5}{}{}{}} |
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\@writefile{lof}{\contentsline {figure}{\numberline {6}{\ignorespaces Snapshot of molecular configuration for a system of 864 G-B molecules with two antiparallel longitudinal dipoles, the first outward pointing dipole having $d^{*}=1.0$, $\mu ^{*}=1.0$ and the second dipole having $d^{*}=0.0$, $\mu ^{*}=0.5$ (fine lines are molecular symmetry axes and small thick lines show terminal dipolar direction, central dipoles are not shown).}}{5}{}} |
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\newlabel{fig:5}{{6}{5}{}{}{}} |
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\@writefile{lof}{\contentsline {figure}{\numberline {7}{\ignorespaces Snapshot of molecular configuration for a system of 864 G-B molecules with single transverse outward pointing dipole, having $d^{*}=1.0$, $\mu ^{*}=1.0$ (fine lines are molecular symmetry axes and small thick lines show terminal dipolar direction).}}{5}{}} |
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\newlabel{fig:6}{{7}{5}{}{}{}} |
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\bibdata{bilayer} |
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\bibcite{Leadbetter77}{{1}{1977}{{Leadbetter et~al.}}{{Leadbetter, Durrant, and Rugman}}} |
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\@writefile{lof}{\contentsline {figure}{\numberline {8}{\ignorespaces Snapshot of molecular configuration for a system of 1372 G-B molecules with two transverse outward pointing dipoles, the first dipole having $d^{*}=1.0$, $\mu ^{*}=1.0$ and the second dipole having $d^{*}=0.0$, $\mu ^{*}=0.5$(fine lines are molecular symmetry axes and small thick lines show terminal dipolar direction, central dipoles are not shown).}}{6}{}} |
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\newlabel{fig:7}{{8}{6}{}{}{}} |
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\@writefile{lof}{\contentsline {figure}{\numberline {9}{\ignorespaces Snapshot of molecular configuration for a system of 1372 G-B molecules with single transverse outward pointing dipole, having $d^{*}=1.0$, $\mu ^{*}=1.0$ (fine lines are molecular symmetry axes and small thick lines show terminal dipolar direction).}}{6}{}} |
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\newlabel{fig:8}{{9}{6}{}{}{}} |
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\@writefile{toc}{\contentsline {section}{\numberline {}Acknowledgments}{6}{}} |
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\bibcite{Gray84}{{2}{1984}{{Gray and Goodby}}{{}}} |
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\bibcite{Hardouin80}{{3}{1980}{{Hardouin et~al.}}{{Hardouin, Levelut, Benattar, and Sigaud}}} |
74 |
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\bibcite{Collings97}{{4}{1997}{{Collings and Hird}}{{}}} |
75 |
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\bibcite{Levelut81a}{{5}{1981}{{Levelut et~al.}}{{Levelut, Tarento, Hardouin, Achard, and Sigaud}}} |
76 |
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\bibcite{Levelut81b}{{6}{1983}{{Hardouin et~al.}}{{Hardouin, Levelut, Achard, and Sigaud}}} |
77 |
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\bibcite{Jeu83}{{7}{1983}{{{de Jeu}}}{{}}} |
78 |
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\bibcite{Photinos76}{{8}{1976}{{Photinos and Saupe}}{{}}} |
79 |
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\bibcite{Vanakaras98}{{9}{1998}{{Vanakaras et~al.}}{{Vanakaras, Photinos, and Samulski}}} |
80 |
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\bibcite{Prost84}{{10}{1984}{{Prost}}{{}}} |
81 |
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\bibcite{Prost80}{{11}{1980}{{Prost}}{{}}} |
82 |
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\bibcite{Meyer76}{{12}{1976}{{Meyer and Lubensky}}{{}}} |
83 |
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\bibcite{Dowell85}{{13}{1985}{{Dowell}}{{}}} |
84 |
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\bibcite{Indekeu86}{{14}{1986}{{Indekeu and Berker}}{{}}} |
85 |
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\bibcite{Baus89}{{15}{1989}{{Baus and Colot}}{{}}} |
86 |
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\bibcite{Netz92}{{16}{1992}{{Netz and Berker}}{{}}} |
87 |
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\bibcite{Levesque93}{{17}{1993}{{Levesque et~al.}}{{Levesque, Weis, and Zarragoicoechea}}} |
88 |
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\bibcite{Gay81}{{18}{1981}{{Gay and Berne}}{{}}} |
89 |
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\bibcite{Berne72}{{19}{1972}{{Berne and Pechukas}}{{}}} |
90 |
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\bibcite{Kushick76}{{20}{1976}{{Kushick and Berne}}{{}}} |
91 |
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\bibcite{Luckhurst90}{{21}{1990}{{Luckhurst et~al.}}{{Luckhurst, Stephens, and Phippen}}} |
92 |
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\bibcite{Perram96}{{22}{1996}{{Perram et~al.}}{{Perram, Rasmussen, Praestgaard, and Lebowitz}}} |
93 |
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\bibcite{Zannonibook2000}{{23}{2000}{{Zannoni}}{{}}} |
94 |
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\bibcite{Berardi96}{{24}{1996}{{Berardi et~al.}}{{Berardi, Orlandi, and Zannoni}}} |
95 |
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\bibcite{Satoh96}{{25}{1996}{{Satoh et~al.}}{{Satoh, Mita, and Kondo}}} |
96 |
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\bibcite{Pasterny2000}{{26}{2000}{{Pasterny et~al.}}{{Pasterny, Gwozdz, and Brodka}}} |
97 |
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\bibcite{Berardi99}{{27}{1999}{{Berardi et~al.}}{{Berardi, Orlandi, and Zannoni}}} |
98 |
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\bibcite{Fukunaga2004}{{28}{2004}{{Fukunaga et~al.}}{{Fukunaga, Takimoto, and Doi}}} |
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\bibcite{Allen87}{{29}{1987}{{Allen and Tildesley}}{{}}} |
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\global \chardef \firstnote@num29\relax |
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\bibstyle{apsrev} |
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\newlabel{LastPage}{{}{6}} |
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\@writefile{toc}{\contentsline {section}{\numberline {}References}{7}{}} |
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