A nematic liquid crystal with an immersed body: equilibrium, stress, and paradox
Abstract
We examine the equilibrium configurations of a nematic liquid crystal with an immersed body in two-dimensions. A complex variables formulation provides a means for finding analytical solutions in the case of strong anchoring. Local tractions, forces, and torques on the body are discussed in a general setting. For weak (finite) anchoring strengths, an effective boundary technique is proposed which is used to determine asymptotic solutions. The energy-minimizing locations of topological defects on the body surface are also discussed. A number of examples are provided, including circular and triangular bodies, and a Janus particle with hybrid anchoring conditions. Analogues to classical results in fluid dynamics are identified, including d'Alembert's paradox, Stokes' paradox, and the Kutta condition for circulation selection.
Keywords
Cite
@article{arxiv.2301.10924,
title = {A nematic liquid crystal with an immersed body: equilibrium, stress, and paradox},
author = {Thomas G. J. Chandler and Saverio E. Spagnolie},
journal= {arXiv preprint arXiv:2301.10924},
year = {2024}
}
Comments
26 pages, 6 figures