English

Hydrodynamic theory of flocking at a solid-liquid interface: long range order and giant number fluctuations

Soft Condensed Matter 2022-01-05 v2

Abstract

We construct the hydrodynamic theory of coherent collective motion ("flocking") at a solid-liquid interface. The polar order parameter and concentration of a collection of "active" (self-propelled) particles at a planar interface between a passive, isotropic bulk fluid and a solid surface are dynamically coupled to the bulk fluid. We find that such systems are stable, and have long-range orientational order, over a wide range of parameters. When stable, these systems exhibit "giant number fluctuations", i.e., large fluctuations of the number of active particles in a fixed large area. Specifically, these number fluctuations grow as the 3/43/4th power of the mean number within the area. Stable systems also exhibit anomalously rapid diffusion of tagged particles suspended in the passive fluid along any directions in a plane parallel to the solid-liquid interface, whereas the diffusivity along the direction perpendicular to the plane is non-anomalous. In other parameter regimes, the system becomes unstable.

Keywords

Cite

@article{arxiv.2102.02534,
  title  = {Hydrodynamic theory of flocking at a solid-liquid interface: long range order and giant number fluctuations},
  author = {Niladri Sarkar and Abhik Basu and John Toner},
  journal= {arXiv preprint arXiv:2102.02534},
  year   = {2022}
}

Comments

52 pages, 3 figures

R2 v1 2026-06-23T22:49:50.680Z