Transport fluctuations in integrable models out of equilibrium

Author:

Myers Jason1,Bhaseen Joe1,Harris Rosemary J.2,Doyon Benjamin1

Affiliation:

1. King's College London

2. Queen Mary University of London

Abstract

We propose exact results for the full counting statistics, or the scaled cumulant generating function, pertaining to the transfer of arbitrary conserved quantities across an interface in homogeneous integrable models out of equilibrium. We do this by combining insights from generalised hydrodynamics with a theory of large deviations in ballistic transport. The results are applicable to a wide variety of physical systems, including the Lieb-Liniger gas and the Heisenberg chain. We confirm the predictions in non-equilibrium steady states obtained by the partitioning protocol, by comparing with Monte Carlo simulations of this protocol in the classical hard rod gas. We verify numerically that the exact results obey the correct non-equilibrium fluctuation relations with the appropriate initial conditions.

Funder

Engineering and Physical Sciences Research Council

Erwin Schrödinger International Institute for Mathematics and Physics

Government of Canada

Leverhulme Trust

Ministry of Research and Innovation

Thomas Young Centre

École Normale Supérieure

Publisher

Stichting SciPost

Subject

General Physics and Astronomy

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