From 035148a3a9614986b5fc0b0aa05ca71bf0ea1ebb Mon Sep 17 00:00:00 2001 From: Pierre-Francois Loos Date: Sat, 6 Apr 2019 21:32:29 +0200 Subject: [PATCH] Theory OK for T2 --- Manuscript/G2-srDFT-control.bib | 15 ++++ Manuscript/G2-srDFT.tex | 125 ++++++++++++++++++++------------ 2 files changed, 92 insertions(+), 48 deletions(-) create mode 100644 Manuscript/G2-srDFT-control.bib diff --git a/Manuscript/G2-srDFT-control.bib b/Manuscript/G2-srDFT-control.bib new file mode 100644 index 0000000..96341a4 --- /dev/null +++ b/Manuscript/G2-srDFT-control.bib @@ -0,0 +1,15 @@ +%% This BibTeX bibliography file was created using BibDesk. +%% http://bibdesk.sourceforge.net/ + +%% Created for Pierre-Francois Loos at 2019-04-06 21:31:18 +0200 + + +%% Saved with string encoding Unicode (UTF-8) + + + +@control{achemso-control, + Ctrl-Article-Title = {yes}, + Ctrl-Chapter-Title = {yes}, + Ctrl-Etal-Firstonly = {yes}, + Ctrl-Etal-Number = {30}} diff --git a/Manuscript/G2-srDFT.tex b/Manuscript/G2-srDFT.tex index dc8f57f..194da8c 100644 --- a/Manuscript/G2-srDFT.tex +++ b/Manuscript/G2-srDFT.tex @@ -1,13 +1,23 @@ \documentclass[aip,jcp,reprint,noshowkeys]{revtex4-1} -\usepackage{graphicx,dcolumn,bm,xcolor,microtype,multirow,amscd,amsmath,amssymb,amsfonts,physics,mhchem,longtable} - +\usepackage{graphicx,dcolumn,bm,xcolor,microtype,multirow,amscd,amsmath,amssymb,amsfonts,physics,mhchem,longtable,xspace} \usepackage{mathpazo,libertine} -\usepackage[normalem]{ulem} + +\usepackage{natbib} +\bibliographystyle{achemso} +\AtBeginDocument{\nocite{achemso-control}} + \newcommand{\alert}[1]{\textcolor{red}{#1}} -\definecolor{darkgreen}{RGB}{0, 180, 0} -\newcommand{\beurk}[1]{\textcolor{darkgreen}{#1}} -\newcommand{\trash}[1]{\textcolor{red}{\sout{#1}}} -\usepackage{xspace} +\definecolor{darkgreen}{HTML}{009900} +\usepackage[normalem]{ulem} +\newcommand{\titou}[1]{\textcolor{red}{#1}} +\newcommand{\juju}[1]{\textcolor{purple}{#1}} +\newcommand{\manu}[1]{\textcolor{darkgreen}{#1}} +\newcommand{\trashPFL}[1]{\textcolor{red}{\sout{#1}}} +\newcommand{\trashJL}[1]{\textcolor{purple}{\sout{#1}}} +\newcommand{\trashMG}[1]{\textcolor{darkgreen}{\sout{#1}}} +\newcommand{\MG}[1]{\manu{(\underline{\bf MG}: #1)}} +\newcommand{\JL}[1]{\juju{(\underline{\bf JL}: #1)}} +\newcommand{\PFL}[1]{\titou{(\underline{\bf PFL}: #1)}} \usepackage{hyperref} \hypersetup{ @@ -26,11 +36,11 @@ \newcommand{\SI}{\textcolor{blue}{supporting information}} % second quantized operators -\newcommand{\psix}[1]{\hat{\Psi}\left({\bf X}_{#1}\right)} -\newcommand{\psixc}[1]{\hat{\Psi}^{\dagger}\left({\bf X}_{#1}\right)} +%\newcommand{\psix}[1]{\hat{\Psi}\left({\bf X}_{#1}\right)} +%\newcommand{\psixc}[1]{\hat{\Psi}^{\dagger}\left({\bf X}_{#1}\right)} \newcommand{\ai}[1]{\hat{a}_{#1}} \newcommand{\aic}[1]{\hat{a}^{\dagger}_{#1}} -\newcommand{\vijkl}[0]{V_{ij}^{kl}} +\newcommand{\vpqrs}[0]{V_{pq}^{rs}} \newcommand{\phix}[2]{\phi_{#1}(\bfr{#2})} \newcommand{\phixprim}[2]{\phi_{#1}(\bfr{#2}')} @@ -44,16 +54,11 @@ % - % energies \newcommand{\Ec}{E_\text{c}} -\newcommand{\EPT}{E_\text{PT2}} -\newcommand{\EsCI}{E_\text{sCI}} -\newcommand{\EDMC}{E_\text{DMC}} \newcommand{\EexFCI}{E_\text{exFCI}} \newcommand{\EexFCIbasis}{E_\text{exFCI}^{\Bas}} \newcommand{\EexFCIinfty}{E_\text{exFCI}^{\infty}} -\newcommand{\EexDMC}{E_\text{exDMC}} \newcommand{\Ead}{\Delta E_\text{ad}} \newcommand{\efci}[0]{E_{\text{FCI}}^{\Bas}} \newcommand{\emodel}[0]{E_{\model}^{\Bas}} @@ -80,10 +85,8 @@ \newcommand{\emuldaval}[0]{\bar{\varepsilon}^{\text{sr},\text{unif}}_{\text{c,md}}\left(\denval ({\bf r});\murval;\wf{}{\Bas})\right)} - - % numbers -\newcommand{\rnum}[0]{{\rm I\!R}} +%\newcommand{\rnum}[0]{{\rm I\!R}} \newcommand{\bfr}[1]{{\bf x}_{#1}} \newcommand{\bfrb}[1]{{\bf r}_{#1}} \newcommand{\dr}[1]{\text{d}\bfr{#1}} @@ -235,7 +238,7 @@ We report a universal density-based basis set incompleteness correction that can \maketitle %%%%%%%%%%%%%%%%%%%%%%%% -%\section{Introduction} +\section{Introduction} %%%%%%%%%%%%%%%%%%%%%%%% Contemporary quantum chemistry has developed in two directions --- wave function theory (WFT) \cite{Pop-RMP-99} and density-functional theory (DFT). \cite{Koh-RMP-99} Although both spring from the same Schr\"odinger equation, each of these philosophies has its own advantages and shortcomings. @@ -267,18 +270,18 @@ Range-separated hybrids, i.e.~single-determinant approximations of RS-DFT, corre Unless otherwise stated, atomic used are used. %%%%%%%%%%%%%%%%%%%%%%%% -%\section{Theory} +\section{Theory} %%%%%%%%%%%%%%%%%%%%%%%% -The basis set correction employed here relies on the RS-DFT formalism to capture the missing part of the short-range correlation effects, a consequence of the non-completeness of the one-electron basis set. +The present basis set correction relies on the RS-DFT formalism to capture the missing part of the short-range correlation effects, a consequence of the incompleteness of the one-electron basis set. Here, we only provide the main working equations. -We refer the interested reader to Ref.~\onlinecite{GinPraFerAssSavTou-JCP-18} for further details about its formal derivation. +We refer the interested reader to Ref.~\onlinecite{GinPraFerAssSavTou-JCP-18} for a more formal derivation. %================================================================= %\subsection{Correcting the basis set error of a general WFT model} %================================================================= Let us assume we have both the energy $\E{\modX}{\Bas}$ and density $\n{\modY}{\Bas}$ of a $\Nel$-electron system described by two methods $\modX$ and $\modY$ (potentially identical) in an incomplete basis set $\Bas$. -According to Eq.~(15) of Ref.~\onlinecite{GinPraFerAssSavTou-JCP-18}, assuming that $\E{\modX}{\Bas}$ and $\n{\modY}{\Bas}$ {\color{red} are reasonable approximations of the FCI energy and density within $\Bas$ } \sout{\textit{exact} ground state energy }, the exact ground state energy $\E{}{}$ \sout{and density $\n{}{}$, respectively, one may write} may be written as +According to Eq.~(15) of Ref.~\onlinecite{GinPraFerAssSavTou-JCP-18}, assuming that $\E{\modX}{\Bas}$ and $\n{\modY}{\Bas}$ are reasonable approximations of the \titou{FCI} energy and density within $\Bas$, the exact ground state energy $\E{}{}$ may be written as \begin{equation} \label{eq:e0basis} \E{}{} @@ -292,20 +295,20 @@ where = \min_{\wf{}{} \to \n{}{}} \mel*{\wf{}{}}{\hT + \hWee{}}{\wf{}{}} - \min_{\wf{}{\Bas} \to \n{}{}} \mel*{\wf{}{\Bas}}{\hT + \hWee{}}{\wf{}{\Bas}} \end{equation} -is the basis-dependent complementary density functional defined in Eq.~(8) of Ref.~\onlinecite{GinPraFerAssSavTou-JCP-18}, and $\hT$ and $\hWee{} = \sum_{i