A large deviation principle for the multispecies stirring process

Fuente: arXiv
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Autores principales: Casini, Francesco, Redig, Frank, van Wiechen, Hidde
Formato: Preprint
Publicado: 2024
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author Casini, Francesco
Redig, Frank
van Wiechen, Hidde
author_facet Casini, Francesco
Redig, Frank
van Wiechen, Hidde
contents In this paper we consider the multispecies stirring process on the discrete torus. We prove a large deviation principle for the trajectory of the vector of densities of the different species. The technique of proof consists in extending the method of the foundational paper [1] based on the superexponential estimate to the multispecies setting. This requires a careful choice of the corresponding weakly asymmetric dynamics, which is parametrized by fields depending on the various species. We also prove the hydrodynamic limit of this weakly asymmetric dynamics, which is similar to but different from the ABC model in [2]. Using the appropriate asymmetric dynamics, we also obtain that the mobility matrix relating the drift currents to the fields coincides with the covariance matrix of the reversible multinomial distribution, which then further leads to the Einstein relation
format Preprint
id arxiv_https___arxiv_org_abs_2410_20857
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A large deviation principle for the multispecies stirring process
Casini, Francesco
Redig, Frank
van Wiechen, Hidde
Probability
Statistical Mechanics
Mathematical Physics
In this paper we consider the multispecies stirring process on the discrete torus. We prove a large deviation principle for the trajectory of the vector of densities of the different species. The technique of proof consists in extending the method of the foundational paper [1] based on the superexponential estimate to the multispecies setting. This requires a careful choice of the corresponding weakly asymmetric dynamics, which is parametrized by fields depending on the various species. We also prove the hydrodynamic limit of this weakly asymmetric dynamics, which is similar to but different from the ABC model in [2]. Using the appropriate asymmetric dynamics, we also obtain that the mobility matrix relating the drift currents to the fields coincides with the covariance matrix of the reversible multinomial distribution, which then further leads to the Einstein relation
title A large deviation principle for the multispecies stirring process
topic Probability
Statistical Mechanics
Mathematical Physics
url https://arxiv.org/abs/2410.20857