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- W2885174015 abstract "We consider $N$ particles in the plane influenced by a general external potential that are subject to the Coulomb interaction in two dimensions at inverse temperature $beta$. At large temperature, when scaling $beta=2c/N$ with some fixed constant $c>0$, in the large-$N$ limit we observe a crossover from Ginibre's circular law or its generalization to the density of non-interacting particles at $beta=0$. Using several different methods we derive a partial differential equation of generalized Liouville type for the crossover density. For radially symmetric potentials we present some asymptotic results and give examples for the numerical solution of the crossover density. These findings generalise previous results when the interacting particles are confined to the real line. In that situation we derive an integral equation for the resolvent valid for a general potential and present the analytic solution for the density in case of a Gaussian plus logarithmic potential." @default.
- W2885174015 created "2018-08-22" @default.
- W2885174015 creator A5018741680 @default.
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- W2885174015 date "2019-03-29" @default.
- W2885174015 modified "2023-09-26" @default.
- W2885174015 title "The High Temperature Crossover for General 2D Coulomb Gases" @default.
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- W2885174015 doi "https://doi.org/10.1007/s10955-019-02276-6" @default.
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