Temperature-dependent orientational ordering on a spherical surface modeled with a lattice spin model

Alan M. Luo, Stefan Wenk, and Patrick Ilg
Phys. Rev. E 90, 022502 – Published 18 August 2014

Abstract

We study the orientational ordering on the surface of a sphere using Monte Carlo and Brownian dynamics simulations of rods interacting with an anisotropic potential. We restrict the orientations to the local tangent plane of the spherical surface and fix the position of each rod to be at a discrete point on the spherical surface. On the surface of a sphere, orientational ordering cannot be perfectly nematic due to the inevitable presence of defects. We find that the ground state of four +1/2 point defects is stable across a broad range of temperatures. We investigate the transition from disordered to ordered phase by decreasing the temperature and find a very smooth transition. We use fluctuations of the local directors to estimate the Frank elastic constant on the surface of a sphere and compare it to the planar case. We observe subdiffusive behavior in the mean square displacement of the defect cores and estimate their diffusion constants.

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  • Received 9 April 2014
  • Revised 30 June 2014

DOI:https://doi.org/10.1103/PhysRevE.90.022502

©2014 American Physical Society

Authors & Affiliations

Alan M. Luo1, Stefan Wenk1, and Patrick Ilg1,2

  • 1ETH Zürich, Department of Materials, Polymer Physics, CH-8093 Zürich, Switzerland
  • 2School of Mathematical and Physical Sciences, University of Reading, Reading RG6 6AX, United Kingdom

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Issue

Vol. 90, Iss. 2 — August 2014

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