English

Novel type of phase transition in a system of self-driven particles

Statistical Mechanics 2007-05-23 v1

Abstract

A simple model with a novel type of dynamics is introduced in order to investigate the emergence of self-ordered motion in systems of particles with biologically motivated interaction. In our model particles are driven with a constant absolute velocity and at each time step assume the average direction of motion of the particles in their neighborhood with some random perturbation (η\eta) added. We present numerical evidence that this model results in a kinetic phase transition from no transport (zero average velocity, va=0| {\bf v}_a | =0) to finite net transport through spontaneous symmetry breaking of the rotational symmetry. The transition is continuous since va| {\bf v}_a | is found to scale as (ηcη)β(\eta_c-\eta)^\beta with β0.45\beta\simeq 0.45.

Keywords

Cite

@article{arxiv.cond-mat/0611743,
  title  = {Novel type of phase transition in a system of self-driven particles},
  author = {Tamas Vicsek and Andras Czirok and Eshel Ben-Jacob and Inon Cohen and Ofer Sochet},
  journal= {arXiv preprint arXiv:cond-mat/0611743},
  year   = {2007}
}