Levy ratchets with dichotomic random flashing
Abstract
Additive symmetric L\'evy noise can induce directed transport of overdamped particles in a static asymmetric potential. We study, numerically and analytically, the effect of an additional dichotomous random flashing in such L\'evy ratchet system. For this purpose we analyze and solve the corresponding fractional Fokker-Planck equations and we check the results with Langevin simulations. We study the behavior of the current as function of the stability index of the L\'evy noise, the noise intensity and the flashing parameters. We find that flashing allows both to enhance and diminish in a broad range the static L\'evy ratchet current, depending on the frequencies and asymmetry of the multiplicative dichotomous noise, and on the additive L\'evy noise parameters. Our results thus extend those for dichotomous flashing ratchets with Gaussian noise to the case of broadly distributed noises.
Cite
@article{arxiv.1109.0497,
title = {Levy ratchets with dichotomic random flashing},
author = {S. A. Ibáñez and A. B. Kolton and S. Risau-Gusman and S. Bouzat},
journal= {arXiv preprint arXiv:1109.0497},
year = {2011}
}
Comments
15 pages, 6 figures