English

Active transport in dense diffusive single-file systems

Statistical Mechanics 2013-03-13 v1

Abstract

We study a minimal model of active transport in crowded single-file environments which generalises the emblematic model of single file diffusion to the case when the tracer particle (TP) performs either an autonomous directed motion or is biased by an external force, while all other particles of the environment (bath) perform unbiased diffusions. We derive explicit expressions, valid in the limit of high density of bath particles, of the full distribution Pn(X)P_n(X) of the TP position and of all its cumulants, for arbitrary values of the bias ff and for any time nn. Our analysis reveals striking features, such as the anomalous scaling n\propto\sqrt{n} of all cumulants, the equality of cumulants of the same parity characteristic of a Skellam distribution and a convergence to a Gaussian distribution in spite of asymmetric density profiles of bath particles. Altogether, our results provide the full statistics of the TP position, and set the basis for a refined analysis of real trajectories of active particles in crowded single-file environments.

Keywords

Cite

@article{arxiv.1303.2930,
  title  = {Active transport in dense diffusive single-file systems},
  author = {P. Illien and O. Bénichou and C. Mejía-Monasterio and G. Oshanin and R. Voituriez},
  journal= {arXiv preprint arXiv:1303.2930},
  year   = {2013}
}
R2 v1 2026-06-21T23:40:53.296Z