English

Dynamics and density distribution of strongly confined noninteracting nonaligning self-propelled particles in a nonconvex boundary

Soft Condensed Matter 2016-01-15 v2

Abstract

We study the dynamics of non-aligning, non-interacting self-propelled particles confined to a box in two dimensions. In the strong confinement limit, when the persistence length of the active particles is much larger than the size of the box, particles stay on the boundary and align with the local boundary normal. It is then possible to derive the steady-state density on the boundary for arbitrary box shapes. In non-convex boxes, the non-uniqueness of the boundary normal results in hysteretic dynamics and the density is non-local, i.e. it depends on the global geometry of the box. These findings establish a general connection between the geometry of a confining box and the behavior of an ideal active gas it confines, thus providing a powerful tool to understand and design such confinements.

Keywords

Cite

@article{arxiv.1410.5151,
  title  = {Dynamics and density distribution of strongly confined noninteracting nonaligning self-propelled particles in a nonconvex boundary},
  author = {Yaouen Fily and Aparna Baskaran and Michael F. Hagan},
  journal= {arXiv preprint arXiv:1410.5151},
  year   = {2016}
}

Comments

12 pages, 12 figures