English

Large deviations for a stochastic model of heat flow

Statistical Mechanics 2009-11-11 v1

Abstract

We investigate a one dimensional chain of 2N2N harmonic oscillators in which neighboring sites have their energies redistributed randomly. The sites N-N and NN are in contact with thermal reservoirs at different temperature τ\tau_- and τ+\tau_+. Kipnis, Marchioro, and Presutti \cite{KMP} proved that this model satisfies {}Fourier's law and that in the hydrodynamical scaling limit, when NN \to \infty, the stationary state has a linear energy density profile θˉ(u)\bar \theta(u), u[1,1]u \in [-1,1]. We derive the large deviation function S(θ(u))S(\theta(u)) for the probability of finding, in the stationary state, a profile θ(u)\theta(u) different from θˉ(u)\bar \theta(u). The function S(θ)S(\theta) has striking similarities to, but also large differences from, the corresponding one of the symmetric exclusion process. Like the latter it is nonlocal and satisfies a variational equation. Unlike the latter it is not convex and the Gaussian normal fluctuations are enhanced rather than suppressed compared to the local equilibrium state. We also briefly discuss more general model and find the features common in these two and other models whose S(θ)S(\theta) is known.

Keywords

Cite

@article{arxiv.cond-mat/0501681,
  title  = {Large deviations for a stochastic model of heat flow},
  author = {Lorenzo Bertini and Davide Gabrielli and Joel L. Lebowitz},
  journal= {arXiv preprint arXiv:cond-mat/0501681},
  year   = {2009}
}

Comments

28 pages, 0 figures

R2 v1 2026-07-22T11:13:09.299Z