arXiv · 1712.01983
Phase separation of self-propelled ballistic particles
Abstract
Self-propelled particles phase separate into coexisting dense and dilute regions above a critical density. The statistical nature of their stochastic motion lends itself to various theories that predict the onset of phase separation. However, these theories are ill equipped to describe such behavior when noise become negligible. To overcome this limitation, we present a predictive model that relies on two density-dependent timescales: $τ_F$, the mean time particles spend between collisions; and $τ_C$, the mean lifetime of a collision. We show that only when $τ_F < τ_C$ do collisions last long enough to develop a growing cluster and initiate phase separation. Using both analytical calculations and active particle simulations, we measure these timescales and determine the critical density for phase separation in both 2D and 3D.
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Isaac R. Bruss, Sharon C. Glotzer. 2018-04-23. Phase separation of self-propelled ballistic particles. https://doi.org/10.1103/physreve.97.042609
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