English

Percolation transition of pusher-type microswimmers

Soft Condensed Matter 2019-08-29 v1

Abstract

We identify the presence of a continuum percolation transition in model suspensions of pusher-type microswimmers. The clusters dynamically aggregate and disaggregate resulting from a competition of attractive and repulsive hydrodynamic and steric interactions. As the microswimmers' filling fraction increases, the cluster size distribution approaches a scale-free form and there emerge large clusters spanning the entire system. We characterize this microswimmer percolation transition via the critical exponents associated to cluster size distribution τ\tau, correlation length ν\nu, mean cluster size γ\gamma, and clusters' fractal dimension dfd_f. We are able to show that two scaling relations, known from percolation theory, also hold for our microswimmers. A real-space renormalization group transformation can approximately predict the value of the exponent ν\nu. This finding opens new vistas on microswimmers' congregative processes.

Keywords

Cite

@article{arxiv.1908.10631,
  title  = {Percolation transition of pusher-type microswimmers},
  author = {Fabian Jan Schwarzendahl and Marco G. Mazza},
  journal= {arXiv preprint arXiv:1908.10631},
  year   = {2019}
}
R2 v1 2026-06-23T10:58:49.725Z