English

Computing equilibrium states of cholesteric liquid crystals in elliptical channels with deflation algorithms

Soft Condensed Matter 2017-06-15 v1

Abstract

We study the problem of a cholesteric liquid crystal confined to an elliptical channel. The system is geometrically frustrated because the cholesteric prefers to adopt a uniform rate of twist deformation, but the elliptical domain precludes this. The frustration is resolved by deformation of the layers or introduction of defects, leading to a particularly rich family of equilibrium configurations. To identify the solution set, we adapt and apply a new family of algorithms, known as deflation methods, that iteratively modify the free energy extremisation problem by removing previously known solutions. A second algorithm, deflated continuation, is used to track solution branches as a function of the aspect ratio of the ellipse and preferred pitch of the cholesteric.

Keywords

Cite

@article{arxiv.1706.04597,
  title  = {Computing equilibrium states of cholesteric liquid crystals in elliptical channels with deflation algorithms},
  author = {David B. Emerson and Patrick E. Farrell and James H. Adler and Scott P. MacLachlan and Timothy J. Atherton},
  journal= {arXiv preprint arXiv:1706.04597},
  year   = {2017}
}

Comments

9 pages, 6 figures