English

Delay-induced transport in a rocking ratchet under feedback control

Statistical Mechanics 2014-06-11 v1

Abstract

Based on the Fokker-Planck equation we investigate the transport of an overdamped colloidal particle in a static, asymmetric periodic potential supplemented by a time-dependent, delayed feedback force, FfcF_{\mathrm{fc}}. For a given time tt, FfcF_\mathrm{fc} depends on the status of the system at a previous time tτDt-\tau_\mathrm{D}, with τD\tau_\mathrm{D} being a delay time, specifically on the delayed mean particle displacement (relative to some "switching position"). For non-zero delay times Ffc(t)F_{\mathrm{fc}}(t) develops nearly regular oscillations generating a net current in the system. Depending on the switching position, this current is nearly as large or even larger than that in a conventional open-loop rocking ratchet. We also investigate thermodynamic properties of the delayed non-equilibrium system and we suggest an underlying Langevin equation which reproduces the Fokker-Planck results.

Keywords

Cite

@article{arxiv.1403.5905,
  title  = {Delay-induced transport in a rocking ratchet under feedback control},
  author = {Sarah A. M. Loos and Robert Gernert and Sabine H. L. Klapp},
  journal= {arXiv preprint arXiv:1403.5905},
  year   = {2014}
}

Comments

11 pages, 12 figures