English

Wall torque controls curvature-driven propulsion in bacterial baths

Soft Condensed Matter 2025-03-24 v1 Statistical Mechanics

Abstract

The persistent dynamics of active particles makes them explore extended portions of an obstacle's boundary during collisions. From impact to escape, the net applied forces depend on the curvature of the wall and increase in the presence of concave features. Here we systematically investigate the forces exerted by swimming bacteria on microfabricated structures, where the radii of curvature can be varied parametrically. We find that these micro-sails are propelled with a speed that scales linearly with curvature and is directed from concave to convex side along the axis of symmetry. By solving the collision problem for microswimmers with aligning torque interactions, we demonstrate that, unlike spherical active particles, curvature mainly affects cell orientation during sliding, leading to greater normal thrust on the concave side and an net applied thrust that scales linearly with curvature.

Keywords

Cite

@article{arxiv.2503.17021,
  title  = {Wall torque controls curvature-driven propulsion in bacterial baths},
  author = {Nicola Pellicciotta and Ojus Satish Bagal and Maria Cristina Cannarsa and Silvio Bianchi and Roberto Di Leonardo},
  journal= {arXiv preprint arXiv:2503.17021},
  year   = {2025}
}
R2 v1 2026-06-28T22:29:33.517Z