English

Polar flocks with discretized directions: the active clock model approaching the Vicsek model

Statistical Mechanics 2022-06-10 v2

Abstract

We consider the off-lattice two-dimensional qq-state active clock model (ACM) as a natural discretization of the Vicsek model (VM) describing flocking. The ACM consists of particles able to move in the plane in a discrete set of qq equidistant angular directions, as in the active Potts model (APM), with an alignment interaction inspired by the ferromagnetic equilibrium clock model. We find that for a small number of directions, the flocking transition of the ACM has the same phenomenology as the APM, including macrophase separation and reorientation transition. For a larger number of directions, the flocking transition in the ACM becomes equivalent to the one of the VM and displays microphase separation and only transverse bands, i.e. no re-orientation transition. Concomitantly also the transition of the qq\to\infty limit of the ACM, the active XY model (AXYM), is in the same universality class as the VM. We also construct a coarse-grained hydrodynamic description for the ACM and AXYM akin to the VM.

Keywords

Cite

@article{arxiv.2203.01181,
  title  = {Polar flocks with discretized directions: the active clock model approaching the Vicsek model},
  author = {Swarnajit Chatterjee and Matthieu Mangeat and Heiko Rieger},
  journal= {arXiv preprint arXiv:2203.01181},
  year   = {2022}
}

Comments

18 pages, 12 figures, 1 table, supplementary material merged to the main text

R2 v1 2026-06-24T09:59:29.517Z