saving work in poster
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Poster/ERC.png
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Poster/ERC.png
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Poster/fig3.pdf
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Poster/fig3.pdf
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Poster/fig4.pdf
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Poster/fig4.pdf
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Poster/main.tex
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Poster/main.tex
@ -17,6 +17,39 @@
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\date{\today}
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\institute{Laboratoire de Chimie et Physique Quantiques (UMR 5626), Université de Toulouse, CNRS, UPS, France}
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\definecolor{darkgreen}{RGB}{0, 180, 0}
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\definecolor{fooblue}{RGB}{0,153,255}
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\definecolor{fooyellow}{RGB}{234,180,0}
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\definecolor{lavender}{rgb}{0.71, 0.49, 0.86}
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\definecolor{inchworm}{rgb}{0.7, 0.93, 0.36}
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\newcommand{\violet}[1]{\textcolor{violet}{#1}}
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\newcommand{\orange}[1]{\textcolor{orange}{#1}}
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\newcommand{\purple}[1]{\textcolor{purple}{#1}}
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\newcommand{\blue}[1]{\textcolor{blue}{#1}}
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\newcommand{\green}[1]{\textcolor{darkgreen}{#1}}
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\newcommand{\yellow}[1]{\textcolor{fooyellow}{#1}}
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\newcommand{\red}[1]{\textcolor{red}{#1}}
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\newcommand{\cyan}[1]{\textcolor{cyan}{#1}}
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\newcommand{\magenta}[1]{\textcolor{magenta}{#1}}
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\newcommand{\highlight}[1]{\textcolor{fooblue}{#1}}
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\newcommand{\pub}[1]{\textcolor{purple}{#1}}
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\newcommand{\bSig}{\boldsymbol{\Sigma}}
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\newcommand{\bSigC}{\boldsymbol{\Sigma}^{\text{c}}}
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\newcommand{\be}{\boldsymbol{\epsilon}}
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\newcommand{\bOm}{\boldsymbol{\Omega}}
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\newcommand{\bEta}[1]{\boldsymbol{\eta}^{(#1)}(s)}
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\newcommand{\ii}{\mathrm{i}}
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\newcommand{\GW}{GW}
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\newcommand{\GF}{\text{GF(2)}}
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\newcommand{\GT}{GT}
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\newcommand{\evGW}{\text{ev}GW}
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\newcommand{\qsGW}{\text{qs}GW}
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\newcommand{\SRGGW}{\text{SRG-}GW}
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\newcommand{\SRGqsGW}{\text{SRG-qs}GW}
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\newcommand{\GOWO}{G_0W_0}
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\makeatletter
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\newcommand\insertlogoi[2][]{\def\@insertlogoi{\includegraphics[#1]{#2}}}
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\newcommand\insertlogoii[2][]{\def\@insertlogoii{\includegraphics[#1]{#2}}}
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@ -92,10 +125,31 @@
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\begin{columns}
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\column{0.5}
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\block{GW}{\blindtext}
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\block{Dynamic $GW$}
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{
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\begin{minipage}{0.4\linewidth}
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\begin{tikzfigure}
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\includegraphics[width=0.8\textwidth]{square}
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\end{tikzfigure}
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\end{minipage}
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\begin{minipage}{0.6\linewidth}
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\begin{equation*}
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\qty[ \underbrace{\blue{\boldsymbol{F}}}_{\text{\blue{Fock matrix}}} + \underbrace{\violet{\boldsymbol{\Sigma}^{\GW}} (\omega = \epsilon^{GW}_{p})}_{\text{\violet{dynamic self-energy}}} ] \psi_{p}^{GW}
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= \epsilon^{GW}_{p} \psi_{p}^{GW}
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\end{equation*}
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\vspace{1cm}
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\begin{equation*}
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\begin{split}
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\violet{\Sigma_{pq}^{GW}}(\omega)
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&= \sum_{i\nu} \frac{\red{W_{pi}^{\nu}} \red{W_{qi}^{\nu}}}{\omega - \epsilon^{GW}_{i} + \orange{\Omega_{\nu}} - \ii \eta} \\
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&+ \sum_{a\nu} \frac{\red{W_{pa}^{\nu}} \red{W_{qa}^{\nu}}}{\omega - \epsilon^{GW}_{a} - \orange{\Omega_{\nu}} + \ii \eta}
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\end{split}
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\end{equation*}
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\end{minipage}
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}
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\column{0.5}
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\block{SRG}{
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\begin{minipage}[t]{0.48\linewidth}
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\begin{minipage}{0.49\linewidth}
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The pillar of the SRG formalism is the flow equation
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\begin{equation}
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\label{eq:flowEquation}
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@ -115,61 +169,100 @@
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\end{equation}
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\end{minipage}
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\hfill\vline\hfill
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\begin{minipage}[t]{0.48\linewidth}
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BLABLABLA
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\begin{minipage}{0.49\linewidth}
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\begin{tikzfigure}
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\includegraphics[width=0.9\textwidth]{SRGMatrix}
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\end{tikzfigure}
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\end{minipage}
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}
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\end{columns}
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\block{SRG-GW}
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\begin{columns}
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\column{0.35}
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\block{Static $GW$}
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{
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\begin{minipage}{0.7\linewidth}
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\blindtext
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\end{minipage}
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\begin{minipage}{0.3\linewidth}
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\begin{tikzfigure}
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\includegraphics[width=0.85\textwidth]{fig1.pdf}
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\includegraphics[width=0.29\textwidth]{upfolding.pdf}
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\end{tikzfigure}}
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\column{0.65}
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\block{SRG-$GW$}
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{
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\begin{minipage}{0.575\linewidth}
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\begin{equation*}
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\begin{split}
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&\blue{\widetilde{\boldsymbol{F}}_{pq}}(s) = \delta_{pq} \blue{\epsilon^{\text{HF}}_{p}} + \sum_{r\nu} \frac{\Delta_{pr}^{\nu} + \Delta_{qr}^{\nu}}{(\Delta_{pr}^{\nu})^2 + (\Delta_{qr}^{\nu})^2 } \red{W_{pr}^{\nu}} \red{W_{qr}^{\nu}} \qty[1 - e^{-((\Delta_{pr}^{\nu})^2+(\Delta_{qr}^{\nu})^2) s} ] \\
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&\qq{with} \Delta_{pr}^{\nu} = \epsilon^{GW}_{p} - \epsilon^{GW}_{r} \pm \Omega_\nu \\
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\\
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&\violet{\widetilde{\Sigma}_{pq}^{\SRGGW}}(\omega;s) = \\
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&\sum_{i\nu} \frac{\red{W_{pi}^{\nu}} \red{W_{qi}^{\nu}}e^{-((\Delta_{pi}^{\nu})^2+(\Delta_{qi}^{\nu})^2) s}}{\omega - \epsilon^{GW}_{i} + \Omega_{\nu}} + \sum_{a\nu} \frac{\red{W_{pa}^{\nu}} \red{W_{qa}^{\nu}}e^{-((\Delta_{pa}^{\nu})^2+(\Delta_{qa}^{\nu})^2) s}}{\omega - \epsilon^{GW}_{a} - \Omega_{\nu}}
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\end{split}
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\end{equation*}
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\end{minipage}
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\begin{minipage}{0.425\linewidth}
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\begin{tikzfigure}
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\includegraphics[width=\textwidth]{fig1.pdf}
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\end{tikzfigure}
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\end{minipage}
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}
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\block{Functional form of the qs$GW$ and SRG-qs$GW$}{
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\begin{minipage}[t]{0.25\linewidth}
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BLABLABLA
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\end{columns}
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\block{Functional form of the qs$GW$ and SRG-qs$GW$}
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{
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\begin{minipage}[t]{0.275\linewidth}
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\vspace{2.5cm}
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\begin{equation*}
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\begin{split}
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&\boldsymbol{\Sigma}^{\text{qs}GW}_{pq}(\eta) = \delta_{pq} \epsilon^{\text{HF}}_{p} + \\
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\\
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&\sum_{r\nu} \frac{1}{2}\qty(\frac{\Delta_{pr}^{\nu}}{(\Delta_{pr}^{\nu})^2 + \eta^2 } + \frac{\Delta_{qr}^{\nu}}{(\Delta_{qr}^{\nu})^2 + \eta^2}) W_{pr}^{\nu} W_{qr}^{\nu}
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\end{split}
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\end{equation*}
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\end{minipage}
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\begin{adjustbox}{valign=t}
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\begin{minipage}[t]{0.5\linewidth}
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\begin{minipage}[t]{0.45\linewidth}
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\begin{tikzfigure}
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\includegraphics[width=0.8\textwidth]{fig2.pdf}
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\end{tikzfigure}
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\end{minipage}
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\end{adjustbox}
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\begin{minipage}[t]{0.25\linewidth}
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BLABLABLA
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\begin{minipage}[t]{0.275\linewidth}
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\vspace{2.5cm}
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\begin{equation*}
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\begin{split}
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&\boldsymbol{\Sigma}^{\text{SRG-qs}GW}_{pq}(s) = \delta_{pq} \epsilon^{\text{HF}}_{p} + \\
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\\
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&\sum_{r\nu} \frac{\Delta_{pr}^{\nu} + \Delta_{qr}^{\nu}}{(\Delta_{pr}^{\nu})^2 + (\Delta_{qr}^{\nu})^2 } W_{pr}^{\nu} W_{qr}^{\nu} \qty[1 - e^{-((\Delta_{pr}^{\nu})^2+(\Delta_{qr}^{\nu})^2) s} ]
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\end{split}
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\end{equation*}
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\end{minipage}
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}
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\begin{columns}
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\column{0.5}
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\block{Something else}{
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\column{0.33}
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\block{IP flow parameter dependence}{
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\begin{tikzfigure}
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\includegraphics[height=15cm]{fig3.pdf}
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\includegraphics[height=14cm]{fig3.pdf}
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\end{tikzfigure}}
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\column{0.5}
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\block{$GW$50 statistics}{
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\column{0.33}
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\block{EA flow parameter dependence}{
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\begin{tikzfigure}
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\includegraphics[height=15cm]{fig6.pdf}
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\includegraphics[height=14cm]{fig4.pdf}
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\end{tikzfigure}}
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\column{0.33}
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\block{MAE flow parameter dependence}{
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\begin{tikzfigure}
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\includegraphics[height=14cm]{fig6.pdf}
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\end{tikzfigure}}
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\end{columns}
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\begin{columns}
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\column{0.85}
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\block{$GW$50 statistics}{
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\begin{tikzfigure}
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\includegraphics[height=15cm]{fig5.pdf}
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\includegraphics[height=14cm]{fig5.pdf}
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\end{tikzfigure}}
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\column{0.15}
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\block{Funding}{
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