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Liquid crystal films on curved surfaces: An entropic sampling study
Authors:D Jayasri  T Sairam  KPN Murthy  VSS Sastry
Institution:1. Special Centre for Nanoscience, Jawaharlal Nehru University, New Delhi 110067, India;2. Department of Applied Sciences and Humanities, Jamia Millia Islamia, New Delhi 110067, India;1. Instrument Technology Research Center, National Applied Research Laboratories, Taiwan;2. Department of Materials Science and Engineering, National Tsing Hua University, Hsinchu 300, Taiwan
Abstract:The confining effect of a spherical substrate inducing anchoring (normal to the surface) on rod-like liquid crystal molecules contained in a thin film spread over it has been investigated with regard to possible changes in the nature of the isotropic-to-nematic phase transition as the sample is cooled. The focus of these Monte Carlo simulations is to study the competing effects of the homeotropic anchoring due to the surface inducing orientational ordering in the radial direction and the inherent uniaxial order promoted by the intermolecular interactions. By adopting an entropic sampling procedure, we could investigate this transition with a high temperature precision, and we studied the effect of the surface anchoring strength on the phase diagram for a specifically chosen geometry. We find that there is a threshold anchoring strength of the surface below which uniaxial nematic phase results, and above which the isotropic fluid cools to a radially ordered nematic phase, besides of course expected changes in the phase transition temperature with the anchoring strength. In the vicinity of the threshold anchoring strength we observe a bistable region between these two structures, clearly brought out by the characteristics of the corresponding microstates constituting the entropic ensemble.
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