English

Aggregation and Segregation of Confined Active Particles

Soft Condensed Matter 2014-03-05 v1 Biological Physics

Abstract

We simulate a model of self-propelled disks with soft repulsive interactions confined to a box in two dimensions. For small rotational diffusion rates, monodisperse disks spontaneously accumulate at the walls. At low densities, interaction forces between particles are strongly inhomogeneous, and a simple model predicts how these inhomogeneities alter the equation of state. At higher densities, collective effects become important. We observe signatures of a jamming transition at a packing fraction ϕ0.88\phi \sim 0.88, which is also the jamming point for non-active athermal monodisperse disks. At this ϕ\phi, the system develops a critical finite active speed necessary for wall aggregation. At packing fractions above ϕ0.6\phi \sim 0.6, the pressure decreases with increasing density, suggesting that strong interactions between particles are affecting the equation of state well below the jamming transition. A mixture of bidisperse disks segregates in the absence of any adhesion, identifying a new mechanism that could contribute to cell sorting in embryonic development.

Keywords

Cite

@article{arxiv.1403.0697,
  title  = {Aggregation and Segregation of Confined Active Particles},
  author = {Xingbo Yang and M. Lisa Manning and M. Cristina Marchetti},
  journal= {arXiv preprint arXiv:1403.0697},
  year   = {2014}
}

Comments

5 pages, 5 figures

R2 v1 2026-06-22T03:19:40.114Z