English

Flow around topological defects in active nematic films

Soft Condensed Matter 2022-01-28 v2 Statistical Mechanics

Abstract

We study the active flow around isolated defects and the self-propulsion velocity of +1/2+1/2 defects in an active nematic film with both viscous dissipation (with viscosity η\eta) and frictional damping Γ\Gamma with a substrate. The interplay between these two dissipation mechanisms is controlled by the hydrodynamic dissipation length d=η/Γ\ell_d=\sqrt{\eta/\Gamma} that screens the flows. For an isolated defect, in the absence of screening from other defects, the size of the vortical flows around the defect is controlled by the system size RR. In the presence of friction that leads to a finite value of d\ell_d, the vorticity field decays to zero on the lengthscales larger than d\ell_d. We show that the self-propulsion velocity of +1/2+1/2 defects grows with RR in small systems where R<dR<\ell_d, while in the infinite system limit or when RdR\gg \ell_d, it approaches a constant value determined by d\ell_d.

Keywords

Cite

@article{arxiv.2111.08537,
  title  = {Flow around topological defects in active nematic films},
  author = {Jonas Rønning and M. Cristina Marchetti and Mark J. Bowick and Luiza Angheluta},
  journal= {arXiv preprint arXiv:2111.08537},
  year   = {2022}
}

Comments

21 pages, 8 figures

R2 v1 2026-06-24T07:40:46.235Z