paper

Particle current in symmetric exclusion process with time-dependent hopping rates

arXiv:0809.2468 · doi:10.1088/1742-5468/2008/11/P11014

Abstract

In a recent study, (Jain et al 2007 Phys. Rev. Lett. 99 190601), a symmetric exclusion process with time-dependent hopping rates was introduced. Using simulations and a perturbation theory, it was shown that if the hopping rates at two neighboring sites of a closed ring vary periodically in time and have a relative phase difference, there is a net DC current which decreases inversely with the system size. In this work, we simplify and generalize our earlier treatment. We study a model where hopping rates at all sites vary periodically in time, and show that for certain choices of relative phases, a DC current of order unity can be obtained. Our results are obtained using a perturbation theory in the amplitude of the time-dependent part of the hopping rate. We also present results obtained in a sudden approximation that assumes large modulation frequency.

17 pages, 2 figures

References in corpus (1)

Particle current in symmetric exclusion process with time-dependent hopping rates · wovepaper