Heterogeneity promotes first to second order phase transition on flocking systems
Abstract
We have considered a variation of the Vicsek model with vectorial noise where each one of the agents have their own noise amplitude normally distributed around a mean value, , with standard deviation . First-order phase transition are observed for standard deviation , whereas for larger values, up to , a continuous phase transition occurs. For values of in the interval the continuous nature of the observed transition is characterized by means of finite-size scaling techniques, that also allow us to estimate the exponents driving the transition. A study of bands stability suggests that no band can form in this regime. Inspired by biological facts, the perception heterogeneity introduced in the model trough , allow us to tune the collective behaviour of the system.
Cite
@article{arxiv.1711.11531,
title = {Heterogeneity promotes first to second order phase transition on flocking systems},
author = {Leandro Guisandez and Gabriel Baglietto and Alejandro Rozenfeld},
journal= {arXiv preprint arXiv:1711.11531},
year = {2018}
}
Comments
11 pages, 6 figures