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-rw-r--r-- | fig/desert.pdf | bin | 0 -> 22875 bytes |
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@@ -329,9 +329,15 @@ is the logarithm of the number of configurations of a given $(a,H_0)$. This problem may be solved exactly with replicas, {\em but it may also be simulated} \cite{Bray_1980_Metastable}. Consider for example the ground-state energy for given $a$, that is, the energy in the limit $\beta_R \rightarrow \infty$ taken adjusting $\beta_I$ so that $\Im H_0=0$ . For $a=1$ this coincides with the ground-state of the real problem. -\begin{center} - \includegraphics[width=6cm]{fig/phase.pdf} -\end{center} +\begin{figure}[htpb] + \centering + \includegraphics{fig/desert.pdf} + \caption{ + The minimum value of $a$ for which the complexity is positive as a function + of (real) energy $\epsilon$ for the pure 4-spin model at several values of + $\kappa$. + } +\end{figure} } \bibliographystyle{apsrev4-2} diff --git a/fig/desert.pdf b/fig/desert.pdf Binary files differnew file mode 100644 index 0000000..a5af1fa --- /dev/null +++ b/fig/desert.pdf |