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authorJaron Kent-Dobias <jaron@kent-dobias.com>2022-03-25 10:12:27 +0100
committerJaron Kent-Dobias <jaron@kent-dobias.com>2022-03-25 10:12:27 +0100
commitf42fd6adb9e4d3ba309ca30805472f72e81cd375 (patch)
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parent38dce748a67c967407b451c401c796a81f4f7425 (diff)
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Added new BibTex entries.
-rw-r--r--stokes.bib28
-rw-r--r--stokes.tex2
2 files changed, 29 insertions, 1 deletions
diff --git a/stokes.bib b/stokes.bib
index f015cc9..37748dd 100644
--- a/stokes.bib
+++ b/stokes.bib
@@ -215,6 +215,34 @@
doi = {10.1103/physrevlett.71.173}
}
+@article{Derrida_1991_The,
+ author = {Derrida, B.},
+ title = {The zeroes of the partition function of the random energy model},
+ journal = {Physica A: Statistical Mechanics and its Applications},
+ publisher = {Elsevier BV},
+ year = {1991},
+ month = {9},
+ number = {1-3},
+ volume = {177},
+ pages = {31--37},
+ url = {https://doi.org/10.1016%2F0378-4371%2891%2990130-5},
+ doi = {10.1016/0378-4371(91)90130-5}
+}
+
+@article{During_2010_Statistical,
+ author = {Düring, G. and Kurchan, J.},
+ title = {Statistical mechanics of {Monte} {Carlo} sampling and the sign problem},
+ journal = {EPL (Europhysics Letters)},
+ publisher = {IOP Publishing},
+ year = {2010},
+ month = {12},
+ number = {5},
+ volume = {92},
+ pages = {50004},
+ url = {https://doi.org/10.1209%2F0295-5075%2F92%2F50004},
+ doi = {10.1209/0295-5075/92/50004}
+}
+
@article{Dyson_1962_A,
author = {Dyson, Freeman J.},
title = {A {Brownian}-Motion Model for the Eigenvalues of a Random Matrix},
diff --git a/stokes.tex b/stokes.tex
index 1d3a8f3..4b28f39 100644
--- a/stokes.tex
+++ b/stokes.tex
@@ -1454,7 +1454,7 @@ function of $\Delta$ and $\arg\delta$.
\left(\frac{2\pi}\beta\right)^{D/2}i^k
\left(|\det\operatorname{Hess}\mathcal S(s_\sigma)|^{-\frac12}\bigm|\mathcal S(s_\sigma)=N\epsilon,k_\sigma=k\right) e^{-\beta N\epsilon}
\end{eqnarray}
-Following Derrida \cite{Derrida},
+Following Derrida \cite{Derrida_1991_The},
\begin{equation}
\mathcal N_\mathrm{typ}(\epsilon,k)=\overline\mathcal N(\epsilon,k)+\eta(\epsilon,k)\overline\mathcal N(\epsilon,k)^{1/2}
\end{equation}