Phase separation and large deviations of lattice active matter
Abstract
Off-lattice active Brownian particles form clusters and undergo phase separation even in the absence of attractions or velocity-alignment mechanisms. Arguments that explain this phenomenon appeal only to the ability of particles to move persistently in a direction that fluctuates, but existing lattice models of hard particles that account for this behavior do not exhibit phase separation. Here we present a lattice model of active matter that exhibits motility-induced phase separation in the absence of velocity alignment. Using direct and rare-event sampling of dynamical trajectories we show that clustering and phase separation are accompanied by pronounced fluctuations of static and dynamic order parameters. This model provides a complement to off-lattice models for the study of motility-induced phase separation.
Keywords
Cite
@article{arxiv.1709.03951,
title = {Phase separation and large deviations of lattice active matter},
author = {Stephen Whitelam and Katherine Klymko and Dibyendu Mandal},
journal= {arXiv preprint arXiv:1709.03951},
year = {2018}
}
Comments
Submitted along with arXiv:1709.03951 as a joint work to PRE and PRL