Figures
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g.tex
12
g.tex
@ -961,9 +961,7 @@ so that the convergence at large $p$ is reached. The values of $E$ are $-0.780,-
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the two-component expression. The estimate of the energy obtained from ${\cal E}(E)=E$ is $-0.76807(5)$ in full agreement with the exact value of $-0.768068...$.
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the two-component expression. The estimate of the energy obtained from ${\cal E}(E)=E$ is $-0.76807(5)$ in full agreement with the exact value of $-0.768068...$.
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\begin{figure}[h!]
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\begin{figure}[h!]
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\begin{center}
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\includegraphics[width=\columnwidth]{fig1.pdf}
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\includegraphics[width=10cm]{fig1.pdf}
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\end{center}
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\caption{1D-Hubbard model, $N=4$, $U=12$. $H_p$ as a function of $p$ for $E=-1.6,-1.2,-1.,-0.9,-0.8$. $H_0$ is
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\caption{1D-Hubbard model, $N=4$, $U=12$. $H_p$ as a function of $p$ for $E=-1.6,-1.2,-1.,-0.9,-0.8$. $H_0$ is
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computed analytically and $H_p$ (p > 0) by Monte Carlo. Error bars are smaller than the symbol size.}
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computed analytically and $H_p$ (p > 0) by Monte Carlo. Error bars are smaller than the symbol size.}
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\label{fig1}
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\label{fig1}
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@ -971,11 +969,9 @@ computed analytically and $H_p$ (p > 0) by Monte Carlo. Error bars are smaller t
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\begin{figure}[h!]
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\begin{figure}[h!]
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\begin{center}
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\includegraphics[width=\columnwidth]{fig2.pdf}
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\includegraphics[width=10cm]{fig2.pdf}
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\caption{1D-Hubbard model, $N=4$ and $U=12$. $\mathcal{E}(E)$ as a function of $E$.
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\end{center}
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The horizontal and vertical lines are at $\mathcal{E}(E_0)=E_0$ and $E=E_0$, respectively.
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\caption{1D-Hubbard model, $N=4$ and $U=12$. ${\cal E}(E)$ as a function of $E$.
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The horizontal and vertical lines are at ${\cal E}(E_0)=E_0$ and $E=E_0$, respectively.
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$E_0$ is the exact energy of -0.768068.... The dotted line is the two-component extrapolation.
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$E_0$ is the exact energy of -0.768068.... The dotted line is the two-component extrapolation.
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Error bars are smaller than the symbol size.}
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Error bars are smaller than the symbol size.}
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\label{fig2}
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\label{fig2}
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@ -11,9 +11,9 @@ set output "fig1.pdf"
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set xrange[0.:60]
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set xrange[0.:60]
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set yrange[-0.35:0.05]
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set yrange[-0.35:0.05]
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plot \
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plot \
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"H_m1.6_fig1" u 1:2:3 title "E=-1.6" w yerrorlines ,\
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"H_m1.6_fig1" u 1:2:3 title "E=-1.6" w yerrorlines ls 1,\
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"H_m1.2_fig1" u 1:2:3 title "E=-1.2" w yerrorlines ,\
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"H_m1.2_fig1" u 1:2:3 title "E=-1.2" w yerrorlines ls 2,\
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"H_m1.0_fig1" u 1:2:3 title "E=-1.0" w yerrorlines ,\
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"H_m1.0_fig1" u 1:2:3 title "E=-1.0" w yerrorlines ls 3,\
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"H_m0.9_fig1" u 1:2:3 title "E=-0.9" w yerrorlines ,\
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"H_m0.9_fig1" u 1:2:3 title "E=-0.9" w yerrorlines ls 4,\
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"H_m0.8_fig1" u 1:2:3 title "E=-0.8" w yerrorlines,\
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"H_m0.8_fig1" u 1:2:3 title "E=-0.8" w yerrorlines ls 6,\
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@ -1,4 +1,4 @@
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set term pdf enhanced font "Times,18" rounded linewidth 2.0
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set term pdf enhanced font "Times,18" rounded linewidth 2.2
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set key bottom right
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set key bottom right
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set format y "%.4f"
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set format y "%.4f"
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set format x "%.3f"
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set format x "%.3f"
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