English

Irreversibility in scalar active turbulence: The role of topological defects

Statistical Mechanics 2026-03-03 v4 Soft Condensed Matter Fluid Dynamics

Abstract

In many active systems, swimmers collectively stir the surrounding fluid to stabilize some self-sustained vortices. The resulting nonequilibrium state is often referred to as active turbulence, by analogy with the turbulence of passive fluids under external stirring. Although active turbulence clearly operates far from equilibrium, it can be challenging to pinpoint which emergent features primarily control the deviation from an equilibrium reversible dynamics. Here, we reveal that dynamical irreversibility essentially stems from singularities in the active stress. Specifically, considering the coupled dynamics of the swimmer density and the stream function, we demonstrate that the symmetries of vortical flows around defects determine the overall irreversibility. Our detailed analysis leads to identifying specific configurations of defect pairs as the dominant contribution to irreversibility.

Keywords

Cite

@article{arxiv.2507.06073,
  title  = {Irreversibility in scalar active turbulence: The role of topological defects},
  author = {Byjesh N. Radhakrishnan and Francesco Serafin and Thomas L. Schmidt and Étienne Fodor},
  journal= {arXiv preprint arXiv:2507.06073},
  year   = {2026}
}

Comments

30 pages, 10 figures. Supplementary movie in the published version