How entropy and hydrodynamics cooperate in rectifying particle transport
Statistical Mechanics
2013-10-28 v1
Abstract
Using the analytical Fick-Jacobs approximation formalism and extensive Brownian dynamics simulations we study particle transport through two-dimensional periodic channels with triangularly shaped walls. Directed motion is caused by the interplay of constant bias acting along the channel axis and a pressure-driven flow. In particular, we analyze the particle mobility and the effective diffusion coefficient. The mechanisms of entropic rectification is revealed in channels with a broken spatial reflection symmetry in presence of hydrodynamically enforced entropic trapping. Due to the combined action of the forcing and the pressure-driven flow field, efficient rectification with a drastically reduced diffusivity is achieved.
Cite
@article{arxiv.1304.4438,
title = {How entropy and hydrodynamics cooperate in rectifying particle transport},
author = {S. Martens and G. Schmid and A. V. Straube and L. Schimansky-Geier and P. Hänggi},
journal= {arXiv preprint arXiv:1304.4438},
year = {2013}
}
Comments
11 pages, 7 figures