Information-theoretic bound on the entropy production to maintain a classical nonequilibrium distribution using ancillary control
Abstract
There are many functional contexts where it is desirable to maintain a mesoscopic system in a nonequilibrium state. However, such control requires an inherent energy dissipation. In this article, we unify and extend a number of works on the minimum energetic cost to maintain a mesoscopic system in a prescribed nonequilibrium distribution using ancillary control. For a variety of control mechanisms, we find that the minimum amount of energy dissipation necessary can be cast as an information-theoretic measure of distinguishability between the target nonequilibrium state and the underlying equilibrium distribution. This work offers quantitative insight into the intuitive idea that more energy is needed to maintain a system farther from equilibrium.
Cite
@article{arxiv.1707.00367,
title = {Information-theoretic bound on the entropy production to maintain a classical nonequilibrium distribution using ancillary control},
author = {Jordan M. Horowitz and Jeremy L. England},
journal= {arXiv preprint arXiv:1707.00367},
year = {2017}
}
Comments
6 pages, 2 figures