arXiv · 1510.01506
Local microscopic behavior for 2D Coulomb gases
Abstract
The study of two-dimensional Coulomb gases lies at the interface of statistical physics and non-Hermitian random matrix theory. In this paper we give a large deviation principle (LDP) for the empirical fields obtained, under the canonical Gibbs measure, by zooming around a point in the bulk of the equilibrium measure, up to the finest averaging scale. The rate function is given by the sum of the "renormalized energy" of Serfaty et al. weighted by the inverse temperature, and of the specific relative entropy. We deduce a local law which quantifies the convergence of the empirical measures of the particles to the equilibrium measure, up to the finest scale.
Explore related subjects
Keep this discovery
Thomas Leblé. 2015-10-06. Local microscopic behavior for 2D Coulomb gases. https://arxiv.org/abs/1510.01506
Cite the original work for its findings. Save a collection to share your selection of sources.