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Manuscript/Response_Letter/CNRS_logo.pdf
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Manuscript/Response_Letter/CNRS_logo.pdf
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Manuscript/Response_Letter/Response_Letter.tex
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Manuscript/Response_Letter/Response_Letter.tex
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\documentclass[10pt]{letter}
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\usepackage{UPS_letterhead,xcolor,mhchem,ragged2e,hyperref}
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\newcommand{\alert}[1]{\textcolor{red}{#1}}
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\definecolor{darkgreen}{HTML}{009900}
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\begin{document}
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\begin{letter}%
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{To the Editors of the Journal of Chemical Physics,}
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\opening{Dear Editors,}
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\justifying
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Please find attached a revised version of the manuscript entitled
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\begin{quote}
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\textit{``Accurate full configuration interaction correlation energy estimates for five- and six-membered rings''}.
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\end{quote}
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We thank the reviewers for their constructive comments.
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Our detailed responses to their comments can be found below.
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For convenience, changes are highlighted in red in the revised version of the manuscript.
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We look forward to hearing from you.
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\closing{Sincerely, the authors.}
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\newpage
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%%% REVIEWER 1 %%%
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\noindent \textbf{\large Authors' answer to Reviewer \#1}
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{This paper reports on full configuration interaction (FCI) energy estimates for five- and six-membered ring molecules in dunning's cc-pVDZ basis set employing the CI using a perturbative selection made iteratively (CIPSI) algorithm.
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The accuracies of standard single-reference methods including the perturbation (MP2, MP3, MP4, MP5) and coupled-cluster models (CCSD, CCSDT, CCSDTQ, CCSD(T), CC2, CC3, CC4, CCSD, CCSDT, CCSDTQ, CR-CC(2,3)) are further analyzed.
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I think that the paper is providing important benchmarks, and is publishable in JCP.
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I have a few comments in the following before publication.}
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\\
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\alert{We thank the reviewer for supporting publication of the present manuscript.
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}
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\begin{enumerate}
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\item
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{I suggest the authors to mention the accuracy of the CC hierarchy from the perturbational analysis, namely, the accuracy increase as MP2 $<$ CC2 $<$ MP3 $<$ CCSD $<$ MP4 $<$ CCSD(T) $<$ CC3 $<$ CCSDT $<$ MP5 $<$ CC4 $<$ CCSDTQ.
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CR-CC(2,3) would be similar to CCSD(T) but I am not sure if it is a size-extensive model.}
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\\
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\alert{
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}
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\item
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{It seems that the results of NO are more linear than those of OO in Fig 3. This contradicts the discussion in the right column of page 7.
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}
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\\
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\alert{
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}
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\item
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{It is claimed that the FCI estimates in Table III are likely accurate to less than 1mEh. I think this is too optimistic as some results in the table range by 1-2 mEh with different number of ftting points. I also think the extrapolation distances need to be listed for comparison to the error-bar.
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}
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\\
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\alert{
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}
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\item
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{Please add consideration to that the conclusion of the paper does not agree with the above-mentioned hierarchy, that is, MP5 is inferior to MP4, and CC3 outperforms CCSDT. I think this is not always the case, but depends on the system, choice of basis set, the error-bar of the FCI estimate, and so on.
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}
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\\
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\alert{
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}
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\end{enumerate}
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%%% REVIEWER 2 %%%
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\noindent \textbf{\large Authors' answer to Reviewer \#2}
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{In the present manuscript, Damour, V\'eril, Kossoki, Caffarel, Jacquemin, Scemama, and Loos present high-accuracy estimates of FCI energies for a series of five- and six-membered rings containing C, N, O, and S atoms, as calculated using either CIPSI (with optimized orbitals) or a selection of M{\o}ller-Plesset and coupled cluster methods. The study is carefully designed and rigorously executed (with a discussion of the orbital optimization technique, which is both adequate in length \& scope). My impression is thus overall positive, and the results nicely emphasize how (i) the use of energetically optimized orbitals is generally preferable and (ii) both the standard CC and the CC$n$ hierarchies converge satisfactorily for weakly correlated systems (unlike MP$n$). I will hence recommend publication as is. Congratulations to the authors on a thorough study.
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}
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\\
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\alert{We thank Reviewer \#2 for these very positive comments.}
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\end{letter}
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\end{document}
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Manuscript/Response_Letter/UPS_letterhead.sty
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Manuscript/Response_Letter/UPS_letterhead.sty
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%ANU etterhead Yves
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%version 1.0 12/06/08
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%need to be improved
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\RequirePackage{graphicx}
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%%%%%%%%%%%%%%%%%%%%% DEFINE USER-SPECIFIC MACROS BELOW %%%%%%%%%%%%%%%%%%%%%
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\def\Who {Pierre-Fran\c{c}ois Loos}
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\def\What {Dr}
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\def\Where {Universit\'e Paul Sabatier}
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\def\Address {Laboratoire de Chimie et Physique Quantiques}
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\def\CityZip {Toulouse, France}
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\def\Email {loos@irsamc.ups-tlse.fr}
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\def\TEL {+33 5 61 55 73 39}
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\def\URL {} % NOTE: use $\sim$ for tilde
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% MARGINS %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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\textwidth 6in
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\textheight 9.25in
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\oddsidemargin 0.25in
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\evensidemargin 0.25in
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\topmargin -1.50in
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\longindentation 0.50\textwidth
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\parindent 5ex
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%%%%%%%%%%%%%%%%%%%%%%%%%%% ADDRESS MACRO BELOW %%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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\address{
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\includegraphics[height=0.7in]{CNRS_logo.pdf} \hspace*{\fill}\includegraphics[height=0.7in]{UPS_logo.pdf}
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\\
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\hrulefill
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\\
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{\small \What~\Who\hspace*{\fill} Telephone:\ \TEL
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\\
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\Where\hspace*{\fill} Email:\ \Email
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\\
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\Address\hspace*{\fill}
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\\
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\CityZip\hspace*{\fill} \URL}
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}
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%%%%%%%%%%%%%%%%%%%%%%%%%%%% OTHER MACROS BELOW %%%%%%%%%%%%%%%%%%%%%%%%%%%%%
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%\signature{\What~\Who}
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\def\opening#1{\ifx\@empty\fromaddress
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\thispagestyle{firstpage}
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\hspace*{\longindendation}\today\par
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\else \thispagestyle{empty}
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{\centering\fromaddress \vspace{5\parskip} \\
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\today\hspace*{\fill}\par}
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\fi
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\vspace{3\parskip}
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{\raggedright \toname \\ \toaddress \par}\vspace{3\parskip}
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\noindent #1\par\raggedright\parindent 5ex\par
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}
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%I do not know what does the macro below
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%\long\def\closing#1{\par\nobreak\vspace{\parskip}
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%\stopbreaks
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%\noindent
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%\ifx\@empty\fromaddress\else
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%\hspace*{\longindentation}\fi
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%\parbox{\indentedwidth}{\raggedright
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%\ignorespaces #1\vskip .65in
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%\ifx\@empty\fromsig
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%\else \fromsig \fi\strut}
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%\vspace*{\fill}
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% \par}
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Manuscript/Response_Letter/UPS_logo.pdf
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Manuscript/Response_Letter/UPS_logo.pdf
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