Dyson gas on a curved contour

Author:

Wiegmann P,Zabrodin AORCID

Abstract

Abstract We introduce and study a model of a logarithmic gas with inverse temperature β on an arbitrary smooth closed contour in the plane. This model generalizes Dyson’s gas (the β-ensemble) on the unit circle. We compute the non-vanishing terms of the large N expansion of the free energy (N is the number of particles) by iterating the ‘loop equation’ that is the Ward identity with respect to reparametrizations and dilatation of the contour. We show that the main contribution to the free energy is expressed through the spectral determinant of the Neumann jump operator associated with the contour, or equivalently through the Fredholm determinant of the Neumann–Poincare (double layer) operator. This result connects the statistical mechanics of the Dyson gas to the spectral geometry of the interior and exterior domains of the supporting contour.

Funder

NSF

HSE University Basic Research Program

Ministry of Science and Higher Education of the Russian Federation

Publisher

IOP Publishing

Subject

General Physics and Astronomy,Mathematical Physics,Modeling and Simulation,Statistics and Probability,Statistical and Nonlinear Physics

Reference27 articles.

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4. Large N expansion for normal and complex matrix ensembles;Wiegmann,2006

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1. Circle Homeomorphisms with Square Summable Diamond Shears;International Mathematics Research Notices;2024-07-22

2. Dyson diffusion on a curved contour;Theoretical and Mathematical Physics;2023-08

3. Дайсоновская диффузия на криволинейном контуре;Teoreticheskaya i Matematicheskaya Fizika;2023-08

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