When are active Brownian particles and run-and-tumble particles equivalent? Consequences for motility-induced phase separation
Abstract
Active Brownian particles (ABPs, such as self-phoretic colloids) swim at fixed speed along a body-axis that rotates by slow angular diffusion. Run-and-tumble particles (RTPs, such as motile bacteria) swim with constant \u until a random tumble event suddenly decorrelates the orientation. We show that when the motility parameters depend on density but not on , the coarse-grained fluctuating hydrodynamics of interacting ABPs and RTPs can be mapped onto each other and are thus strictly equivalent. In both cases, a steeply enough decreasing causes phase separation in dimensions , even when no attractive forces act between the particles. This points to a generic role for motility-induced phase separation in active matter. However, we show that the ABP/RTP equivalence does not automatically extend to the more general case of \u-dependent motilities.
Keywords
Cite
@article{arxiv.1206.1805,
title = {When are active Brownian particles and run-and-tumble particles equivalent? Consequences for motility-induced phase separation},
author = {M. E. Cates and J. Tailleur},
journal= {arXiv preprint arXiv:1206.1805},
year = {2013}
}