Physical Review Research (Dec 2020)

Escape problem for active particles confined to a disk

  • Kristian Stølevik Olsen,
  • Luiza Angheluta,
  • Eirik Grude Flekkøy

DOI
https://doi.org/10.1103/PhysRevResearch.2.043314
Journal volume & issue
Vol. 2, no. 4
p. 043314

Abstract

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We study the escape problem for interacting, self-propelled particles confined to a disk, where particles can exit through one open slot on the circumference. Within a minimal two-dimensional Vicsek model, we numerically study the statistics of escape events when the self-propelled particles can be in a flocking state. We show that while an exponential survival probability is characteristic for noninteracting self-propelled particles at all times, the interacting particles have an initial exponential phase crossing over to a subexponential late-time behavior. We use a phenomenological model based on nonstationary Poisson processes which includes the Allee effect to explain this subexponential trend and perform numerical simulations for various noise intensities.