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Revision 2740 by chrisfen, Wed Apr 26 14:20:17 2006 UTC vs.
Revision 2744 by gezelter, Tue May 2 13:11:41 2006 UTC

# Line 1 | Line 1
1   %\documentclass[prb,aps,twocolumn,tabularx]{revtex4}
2   %\documentclass[aps,prb,preprint]{revtex4}
3 < \documentclass[10pt]{article}
4 < %\usepackage{endfloat}
3 > \documentclass[11pt]{article}
4 > \usepackage{endfloat}
5   \usepackage{amsmath,bm}
6   \usepackage{amssymb}
7   \usepackage{epsf}
# Line 20 | Line 20
20   \topmargin -21pt \headsep 10pt
21   \textheight 9.0in \textwidth 6.5in
22   \brokenpenalty=10000
23 < \renewcommand{\baselinestretch}{1.2}
23 > %\renewcommand{\baselinestretch}{1.2}
24 > \renewcommand{\baselinestretch}{2}
25   \renewcommand\citemid{\ } % no comma in optional reference note
26 + \AtBeginDelayedFloats{\renewcommand{\baselinestretch}{2}} %doublespace captions
27 + \let\Caption\caption
28 + \renewcommand\caption[1]{%
29 +        \Caption[#1]{}%
30 + }
31 + \setlength{\abovecaptionskip}{1.2in}
32 + \setlength{\belowcaptionskip}{1.2in}
33  
34   \begin{document}
35  
36   \title{Is the Ewald summation still necessary? \\
37 < Pairwise alternatives to the accepted standard for \\
38 < long-range electrostatics}
37 > Pairwise alternatives to the accepted standard \\
38 > for long-range electrostatics}
39  
40   \author{Christopher J. Fennell and J. Daniel Gezelter\footnote{Corresponding author. \ Electronic mail:
41   gezelter@nd.edu} \\
# Line 52 | Line 60 | to see how well they reproduce the energetics and dyna
60   techniques.  Comparisons were performed with this and other pairwise
61   methods against the smooth particle mesh Ewald ({\sc spme}) summation
62   to see how well they reproduce the energetics and dynamics of a
63 < variety of simulation types.
63 > variety of molecular simulations.
64   \end{abstract}
65  
66   \newpage
# Line 200 | Line 208 | can prove problematic.  The Ewald sum has been reformu
208   conditions. However, in certain systems, such as vapor-liquid
209   interfaces and membranes, the intrinsic three-dimensional periodicity
210   can prove problematic.  The Ewald sum has been reformulated to handle
211 < 2D systems,\cite{Parry75,Parry76,Heyes77,deLeeuw79,Rhee89}, but the
212 < new methods are computationally expensive.\cite{Spohr97,Yeh99} More
211 > 2-D systems,\cite{Parry75,Parry76,Heyes77,deLeeuw79,Rhee89} but these
212 > methods are computationally expensive.\cite{Spohr97,Yeh99} More
213   recently, there have been several successful efforts toward reducing
214 < the computational cost of 2D lattice summations, often enabling the
215 < use of the mentioned
216 < optimizations.\cite{Yeh99,Kawata01,Arnold02,deJoannis02,Brodka04}
214 > the computational cost of 2-D lattice
215 > summations,\cite{Yeh99,Kawata01,Arnold02,deJoannis02,Brodka04}
216 > bringing them more in line with the cost of the full 3-D summation.
217  
218 +
219   Several studies have recognized that the inherent periodicity in the
220   Ewald sum can also have an effect on three-dimensional
221   systems.\cite{Roberts94,Roberts95,Luty96,Hunenberger99a,Hunenberger99b,Weber00}
# Line 531 | Line 540 | Fig. \ref{fig:linearFit}.
540  
541   \begin{figure}
542   \centering
543 < \includegraphics[width = 3.25in]{./dualLinear.pdf}
543 > \includegraphics[width = \linewidth]{./dualLinear.pdf}
544   \caption{Example least squares regressions of the configuration energy
545   differences for SPC/E water systems. The upper plot shows a data set
546   with a poor correlation coefficient ($R^2$), while the lower plot
# Line 546 | Line 555 | Results and discussion for the individual analysis of
555   differences.
556  
557   Results and discussion for the individual analysis of each of the
558 < system types appear in the supporting information, while the
559 < cumulative results over all the investigated systems appears below in
560 < section \ref{sec:EnergyResults}.
558 > system types appear in the supporting information,\cite{EPAPSdeposit}
559 > while the cumulative results over all the investigated systems appears
560 > below in section \ref{sec:EnergyResults}.
561  
562   \subsection{Molecular Dynamics and the Force and Torque Vectors}\label{sec:MDMethods}
563   We evaluated the pairwise methods (outlined in section
# Line 717 | Line 726 | figure \ref{fig:delE}.
726  
727   \begin{figure}
728   \centering
729 < \includegraphics[width=3.25in]{./delEplot.pdf}
729 > \includegraphics[width=5.5in]{./delEplot.pdf}
730   \caption{Statistical analysis of the quality of configurational energy
731   differences for a given electrostatic method compared with the
732   reference Ewald sum.  Results with a value equal to 1 (dashed line)
# Line 744 | Line 753 | readers can consult the accompanying supporting inform
753   significant improvement using the group-switched cutoff because the
754   salt and salt solution systems contain non-neutral groups.  Interested
755   readers can consult the accompanying supporting information for a
756 < comparison where all groups are neutral.
756 > comparison where all groups are neutral.\cite{EPAPSdeposit}
757  
758   For the {\sc sp} method, inclusion of electrostatic damping improves
759   the agreement with Ewald, and using an $\alpha$ of 0.2 \AA $^{-1}$
# Line 777 | Line 786 | accumulation of the statistics from all of the system
786  
787   \begin{figure}
788   \centering
789 < \includegraphics[width=3.25in]{./frcMagplot.pdf}
789 > \includegraphics[width=5.5in]{./frcMagplot.pdf}
790   \caption{Statistical analysis of the quality of the force vector
791   magnitudes for a given electrostatic method compared with the
792   reference Ewald sum.  Results with a value equal to 1 (dashed line)
# Line 816 | Line 825 | performs more favorably.
825  
826   \begin{figure}
827   \centering
828 < \includegraphics[width=3.25in]{./trqMagplot.pdf}
828 > \includegraphics[width=5.5in]{./trqMagplot.pdf}
829   \caption{Statistical analysis of the quality of the torque vector
830   magnitudes for a given electrostatic method compared with the
831   reference Ewald sum.  Results with a value equal to 1 (dashed line)
# Line 856 | Line 865 | distributions of the combined set over all system type
865  
866   \begin{figure}
867   \centering
868 < \includegraphics[width=3.25in]{./frcTrqAngplot.pdf}
868 > \includegraphics[width=5.5in]{./frcTrqAngplot.pdf}
869   \caption{Statistical analysis of the width of the angular distribution
870   that the force and torque vectors from a given electrostatic method
871   make with their counterparts obtained using the reference Ewald sum.
# Line 892 | Line 901 | charged bodies, and this observation is investigated f
901   particles in all seven systems, while torque vectors are only
902   available for neutral molecular groups.  Damping is more beneficial to
903   charged bodies, and this observation is investigated further in the
904 < accompanying supporting information.
904 > accompanying supporting information.\cite{EPAPSdeposit}
905  
906   Although not discussed previously, group based cutoffs can be applied
907   to both the {\sc sp} and {\sc sf} methods.  The group-based cutoffs
# Line 991 | Line 1000 | low-frequency portion of the power spectrum.
1000  
1001   \begin{figure}
1002   \centering
1003 < \includegraphics[width = 3.25in]{./vCorrPlot.pdf}
1003 > \includegraphics[width = \linewidth]{./vCorrPlot.pdf}
1004   \caption{Velocity autocorrelation functions of NaCl crystals at
1005   1000 K using {\sc spme}, {\sc sf} ($\alpha$ = 0.0, 0.1, \& 0.2), and {\sc
1006   sp} ($\alpha$ = 0.2). The inset is a magnification of the area around
# Line 1031 | Line 1040 | noticeable effect on peak location or magnitude.
1040  
1041   \begin{figure}
1042   \centering
1043 < \includegraphics[width = 3.25in]{./spectraSquare.pdf}
1043 > \includegraphics[width = \linewidth]{./spectraSquare.pdf}
1044   \caption{Power spectra obtained from the velocity auto-correlation
1045   functions of NaCl crystals at 1000 K while using {\sc spme}, {\sc sf}
1046   ($\alpha$ = 0, 0.1, \& 0.2), and {\sc sp} ($\alpha$ = 0.2).  The inset
# Line 1070 | Line 1079 | cutoff distance.
1079  
1080   \begin{figure}
1081   \centering
1082 < \includegraphics[width = 3.25in]{./increasedDamping.pdf}
1082 > \includegraphics[width = \linewidth]{./increasedDamping.pdf}
1083   \caption{Effect of damping on the two lowest-frequency phonon modes in
1084   the NaCl crystal at 1000~K.  The undamped shifted force ({\sc sf})
1085   method is off by less than 10 cm$^{-1}$, and increasing the

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