English

Heterogeneity promotes first to second order phase transition on flocking systems

Soft Condensed Matter 2018-04-06 v3

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, μ\mu, with standard deviation σ\sigma. First-order phase transition are observed for standard deviation 0σ<σtri0.110\leq\sigma<\sigma_{tri}\approx0.11, whereas for larger values, up to σ=0.3\sigma=0.3, a continuous phase transition occurs. For values of σ\sigma in the interval 0.15σ0.300.15\leq\sigma\leq0.30 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 σ\sigma, allow us to tune the collective behaviour of the system.

Keywords

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

R2 v1 2026-06-22T23:02:43.210Z