Partial and complete wetting of droplets of active Brownian particles
Abstract
We study wetting droplets formed of active Brownian particles in contact with a repulsive potential barrier, in a wedge geometry. Our numerical results demonstrate a transition between partially wet and completely wet states, as a function of the barrier height, analogous to the corresponding surface phase transition in passive fluids. We analyse partially wet configurations characterised by a nonzero contact angle between the droplet surface and the barrier, including the average density profile and its fluctuations. These findings are compared with two equilibrium systems: a Lennard-Jones fluid and a simple contour model for a liquid-vapour interface. We locate the wetting transition where , and the neutral state where . We discuss the implications of these results for possible definitions of surface tensions in active fluids.
Keywords
Cite
@article{arxiv.2310.07531,
title = {Partial and complete wetting of droplets of active Brownian particles},
author = {Francesco Turci and Robert L. Jack and Nigel B. Wilding},
journal= {arXiv preprint arXiv:2310.07531},
year = {2023}
}