English

Fluctuation-Dissipation Theorem in Nonequilibrium Steady States

Statistical Mechanics 2010-10-13 v2 Soft Condensed Matter

Abstract

In equilibrium, the fluctuation-dissipation theorem (FDT) expresses the response of an observable to a small perturbation by a correlation function of this variable with another one that is conjugate to the perturbation with respect to \emph{energy}. For a nonequilibrium steady state (NESS), the corresponding FDT is shown to involve in the correlation function a variable that is conjugate with respect to \emph{entropy}. By splitting up entropy production into one of the system and one of the medium, it is shown that for systems with a genuine equilibrium state the FDT of the NESS differs from its equilibrium form by an additive term involving \emph{total} entropy production. A related variant of the FDT not requiring explicit knowledge of the stationary state is particularly useful for coupled Langevin systems. The \emph{a priori} surprising freedom apparently involved in different forms of the FDT in a NESS is clarified.

Keywords

Cite

@article{arxiv.0907.5478,
  title  = {Fluctuation-Dissipation Theorem in Nonequilibrium Steady States},
  author = {Udo Seifert and Thomas Speck},
  journal= {arXiv preprint arXiv:0907.5478},
  year   = {2010}
}

Comments

6 pages; EPL, in press

R2 v1 2026-06-21T13:31:06.526Z