English

Martingale theory for housekeeping heat

Statistical Mechanics 2019-01-15 v2 Biological Physics Data Analysis, Statistics and Probability

Abstract

The housekeeping heat is the energy exchanged between a system and its environment in a nonequilibrium process that results from the violation of detailed balance. We describe fluctuations of the housekeeping heat in mesoscopic systems using the theory of martingales, a mathematical framework widely used in probability theory and finance. We show that the exponentiated housekeeping heat (in units of kBTk_{\rm B}T, with kBk_{\rm B} the Boltzmann constant and TT the temperature) of a Markovian nonequilibrium process under arbitrary time-dependent driving is a martingale process. From this result, we derive universal equalities and inequalities for the statistics of stopping-times and suprema of the housekeeping heat. We test our results with numerical simulations of a system driven out of equilibrium and described by Langevin dynamics.

Keywords

Cite

@article{arxiv.1810.09584,
  title  = {Martingale theory for housekeeping heat},
  author = {Raphael Chetrite and Shamik Gupta and Izaak Neri and Édgar Roldán},
  journal= {arXiv preprint arXiv:1810.09584},
  year   = {2019}
}

Comments

7 pages, 2 figures