Critical behavior of active Brownian particles
Soft Condensed Matter
2018-09-26 v1
Abstract
We study active Brownian particles as a paradigm for genuine non-equilibrium phase transitions. Access to the critical point in computer simulations is obstructed by the fact that the density is conserved. We propose a modification of sampling finite-size fluctuations and successfully test this method for the 2D Ising model. Using this model allows us to determine accurately the critical point of two dimensional active Brownian particles at , . Based on this estimate, we study the corresponding critical exponents , , and . Our results are incompatible with the 2D-Ising exponents, thus raising the question whether there exists a corresponding non-equilibrium universality class.
Cite
@article{arxiv.1712.02258,
title = {Critical behavior of active Brownian particles},
author = {Jonathan Tammo Siebert and Florian Dittrich and Friederike Schmid and Kurt Binder and Thomas Speck and Peter Virnau},
journal= {arXiv preprint arXiv:1712.02258},
year = {2018}
}