paper

Anomalous velocity distributions in active Brownian suspensions

arXiv:1303.0996 · doi:10.1103/PhysRevE.88.022138

Abstract

Large scale simulations and analytical theory have been combined to obtain the non-equilibrium velocity distribution, , of randomly accelerated particles in suspension. The simulations are based on an event-driven algorithm, generalised to include friction. They reveal strongly anomalous but largely universal distributions which are independent of volume fraction and collision processes, which suggests a one-particle model should capture all the essential features. We have formulated this one-particle model and solved it analytically in the limit of strong damping, where we find that decays as for multiple decades, eventually crossing over to a Gaussian decay for the largest velocities. Many particle simulations and numerical solution of the one-particle model agree for all values of the damping.

6 pages, 5 figures