Casimir stresses in active nematic films
Soft Condensed Matter
2019-05-08 v1 Statistical Mechanics
Abstract
We calculate the Casimir stresses in a thin layer of active fluid with nematic order. By using a stochastic hydrodynamic approach for an active fluid layer of finite thickness , we generalize the Casimir stress for nematic liquid crystals in thermal equilibrium to active systems. We show that the active Casimir stress differs significantly from its equilibrium counterpart. For contractile activity, the active Casimir stress, although attractive like its equilibrium counterpart, diverges logarithmically as approaches a threshold of the spontaneous flow instability from below. In contrast, for small extensile activity, it is repulsive, has no divergence at any and has a scaling with different from its equilibrium counterpart.
Keywords
Cite
@article{arxiv.1905.02456,
title = {Casimir stresses in active nematic films},
author = {Abhik Basu and Jean-Francois Joanny and Frank Jülicher and Jacques Prost},
journal= {arXiv preprint arXiv:1905.02456},
year = {2019}
}