Negative drag force on beating flagellar-shaped bodies in active fluids
arXiv:2508.13129 · doi:10.1103/3xbk-sxhh
Abstract
We experimentally investigate the drag force exerted by a suspension of light-induced active particles (APs) on a translating and beating idealized flagellum-shaped object realized through negative phototactic interactions with the APs. We observe both positive and negative drag forces, depending on the beating frequency and translational velocity, driven by the dynamic redistribution of APs in response to the object's motion. These findings are supported by numerical simulations and an analytical model, extendable to a range of slender geometries. Our results illustrate the complex interplay between geometric body changes and the density distribution in active baths, which may also be relevant for microrobotic applications.
to appear in PRL
References in corpus (8)
- Fluid dynamics and noise in bacterial cell-cell and cell-surface scattering
- Phototaxis of synthetic microswimmers in optical landscapes
- Fluctuations and Rheology in Active Bacterial Suspensions
- Tuning the motility and directionality of self-propelled colloids
- On the Einstein relation between mobility and diffusion coefficient in an active bath
- Transient coarsening and the motility of optically heated Janus colloids in a binary liquid mixture
- Vorticity Determines the Force on Bodies Immersed in Active Fluids
- Active particles confined in deformable droplets