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root/group/trunk/nonperiodicVSS/nonperiodicVSS.aux
Revision: 3962
Committed: Thu Sep 19 19:42:05 2013 UTC (10 years, 10 months ago) by kstocke1
File size: 5229 byte(s)
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# User Rev Content
1 kstocke1 3927 \relax
2     \citation{achemso-control}
3     \providecommand{\mciteSetMaxWidth}[3]{\relax}
4     \providecommand{\mciteSetMaxCount}[3]{\relax}
5     \bibstyle{achemso}
6 kstocke1 3947 \citation{Vardeman2011}
7     \citation{Vardeman2011}
8     \citation{Kuang2012}
9     \citation{Kuang2012}
10     \citation{openmd}
11     \citation{openmd}
12 kstocke1 3927 \@writefile{toc}{\contentsline {section}{\numberline {1}Introduction}{2}}
13     \@writefile{toc}{\contentsline {section}{\numberline {2}Methodology}{2}}
14 kstocke1 3947 \@writefile{toc}{\contentsline {subsection}{\numberline {2.1}Dynamics for non-periodic systems}{2}}
15     \@writefile{toc}{\contentsline {subsection}{\numberline {2.2}VSS-RNEMD for non-periodic systems}{2}}
16     \citation{Bedrov:2000}
17     \citation{Kuang2010}
18     \citation{Bedrov:2000,Kuang2010}
19 kstocke1 3927 \newlabel{eq:bc}{{1}{3}}
20     \newlabel{eq:bh}{{2}{3}}
21     \newlabel{eq:Kc}{{3}{3}}
22     \newlabel{eq:Kh}{{4}{3}}
23 kstocke1 3947 \citation{PhysRevB.59.3527}
24     \citation{PhysRevB.59.3527}
25     \citation{TraPPE-UA.alkanes}
26     \citation{TraPPE-UA.alkanes}
27     \citation{kuang:AuThl}
28     \citation{kuang:AuThl,Kuang2012}
29     \citation{vlugt:cpc2007154}
30     \citation{vlugt:cpc2007154}
31     \citation{hautman:4994}
32     \citation{hautman:4994}
33     \@writefile{toc}{\contentsline {section}{\numberline {3}Computational Details}{4}}
34     \@writefile{toc}{\contentsline {subsection}{\numberline {3.1}Simulation protocol}{4}}
35     \@writefile{toc}{\contentsline {subsection}{\numberline {3.2}Force field parameters}{4}}
36     \@writefile{toc}{\contentsline {subsection}{\numberline {3.3}Thermal conductivities}{4}}
37     \@writefile{toc}{\contentsline {subsection}{\numberline {3.4}Interfacial thermal conductance}{5}}
38     \newlabel{eq:G}{{6}{5}}
39     \@writefile{toc}{\contentsline {subsection}{\numberline {3.5}Interfacial friction}{5}}
40     \newlabel{eq:Xi}{{8}{5}}
41     \citation{Kuang2010}
42     \newlabel{eq:S}{{9}{6}}
43     \newlabel{eq:Xia}{{10}{6}}
44     \newlabel{eq:Xibc}{{11}{6}}
45     \@writefile{toc}{\contentsline {section}{\numberline {4}Tests and Applications}{6}}
46     \@writefile{toc}{\contentsline {subsection}{\numberline {4.1}Thermal conductivities}{6}}
47 kstocke1 3927 \gdef \LT@i {\LT@entry
48 kstocke1 3934 {1}{80.25342pt}\LT@entry
49     {1}{53.69913pt}\LT@entry
50     {1}{72.96097pt}}
51 kstocke1 3927 \gdef \LT@ii {\LT@entry
52 kstocke1 3934 {1}{80.25342pt}\LT@entry
53     {1}{53.69913pt}\LT@entry
54     {1}{72.96097pt}}
55 kstocke1 3947 \@writefile{lot}{\contentsline {table}{\numberline {1}{\ignorespaces Calculated thermal conductivity of a crystalline gold nanoparticle of radius 40 \r A. Calculations were performed at 300 K and ambient density. Gold-gold interactions are described by the Quantum Sutton-Chen potential.}}{7}}
56     \newlabel{table:goldconductivity}{{1}{7}}
57     \@writefile{lot}{\contentsline {table}{\numberline {2}{\ignorespaces Calculated thermal conductivity of a cluster of 6912 SPC/E water molecules. Calculations were performed at 300 K and ambient density.}}{7}}
58 kstocke1 3932 \gdef \LT@iii {\LT@entry
59 kstocke1 3934 {1}{92.33887pt}\LT@entry
60     {1}{87.99518pt}\LT@entry
61 kstocke1 3943 {1}{81.23506pt}\LT@entry
62     {1}{81.23506pt}\LT@entry
63 kstocke1 3934 {1}{33.27168pt}\LT@entry
64 kstocke1 3943 {1}{57.0pt}}
65 kstocke1 3947 \newlabel{table:waterconductivity}{{2}{8}}
66     \@writefile{toc}{\contentsline {subsection}{\numberline {4.2}Interfacial thermal conductance}{8}}
67     \@writefile{toc}{\contentsline {subsection}{\numberline {4.3}Interfacial friction}{8}}
68     \@writefile{lot}{\contentsline {table}{\numberline {3}{\ignorespaces Calculated ``stick'' interfacial friction coefficients ($\kappa $) and friction factors ($f$) of gold nanostructures solvated in TraPPE-UA hexane. The ellipsoid is oriented with the long axis along the $z$ direction.}}{8}}
69 kstocke1 3962 \newlabel{table:interfacialfrictionstick}{{3}{9}}
70 kstocke1 3947 \@writefile{toc}{\contentsline {section}{\numberline {5}Discussion}{9}}
71 kstocke1 3927 \bibdata{acs-nonperiodicVSS,nonperiodicVSS}
72 kstocke1 3947 \bibcite{Vardeman2011}{{1}{2011}{{Vardeman et~al.}}{{Vardeman, Stocker, and Gezelter}}}
73     \bibcite{Barber96}{{2}{1996}{{Barber et~al.}}{{Barber, Dobkin, and Huhdanpaa}}}
74     \bibcite{EDELSBRUNNER:1994oq}{{3}{1994}{{Edelsbrunner and Mucke}}{{Edelsbrunner, and Mucke}}}
75     \bibcite{openmd}{{4}{}{{Gezelter et~al.}}{{Gezelter, Kuang, Marr, Stocker, Li, Vardeman, Lin, Fennell, Sun, Daily, Zheng, and Meineke}}}
76     \bibcite{Kuang2012}{{5}{2012}{{Kuang and Gezelter}}{{Kuang, and Gezelter}}}
77     \bibcite{Bedrov:2000}{{6}{2000}{{Bedrov and Smith}}{{Bedrov, and Smith}}}
78     \bibcite{Kuang2010}{{7}{2010}{{Kuang and Gezelter}}{{Kuang, and Gezelter}}}
79     \bibcite{PhysRevB.59.3527}{{8}{1999}{{Qi et~al.}}{{Qi, \c {C}a\v {g}in, Kimura, and {Goddard III}}}}
80     \bibcite{TraPPE-UA.alkanes}{{9}{1998}{{Martin and Siepmann}}{{Martin, and Siepmann}}}
81     \bibcite{kuang:AuThl}{{10}{2011}{{Kuang and Gezelter}}{{Kuang, and Gezelter}}}
82     \bibcite{vlugt:cpc2007154}{{11}{2007}{{Schapotschnikow et~al.}}{{Schapotschnikow, Pool, and Vlugt}}}
83     \bibcite{hautman:4994}{{12}{1989}{{Hautman and Klein}}{{Hautman, and Klein}}}
84     \mciteSetMaxCount{main}{bibitem}{12}
85     \mciteSetMaxCount{main}{subitem}{1}
86     \mciteSetMaxWidth{main}{bibitem}{786432}
87     \mciteSetMaxWidth{main}{subitem}{0}
88     \@writefile{lof}{\contentsline {figure}{\numberline {1}{\ignorespaces Schematics of periodic (left) and nonperiodic (right) Velocity Shearing and Scaling RNEMD. A kinetic energy or momentum flux is applied from region B to region A. Thermal gradients are depicted by a color gradient. Linear or angular velocity gradients are shown as arrows.\relax }}{12}}
89 kstocke1 3944 \providecommand*\caption@xref[2]{\@setref\relax\@undefined{#1}}
90 kstocke1 3947 \newlabel{fig:VSS}{{1}{12}}

Properties

Name Value
svn:executable