Isotropic-nematic phase transition in the Lebwohl-Lasher model from density of states simulations

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Abstract

Density of states Monte Carlo simulations have been performed to study the isotropic-nematic (IN) transition of the Lebwohl-Lasher model for liquid crystals. The IN transition temperature was calculated as a function of system size using expanded ensemble density of states simulations with histogram reweighting. The IN temperature for infinite system size was obtained by extrapolation of three independent measures. A subsequent analysis of the kinetics in the model showed that the transition occurs via spinodal decomposition through aggregation of clusters of liquid crystal molecules. © 2012 American Institute of Physics.

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Shekhar, R., Whitmer, J. K., Malshe, R., Moreno-Razo, J. A., Roberts, T. F., & De Pablo, J. J. (2012). Isotropic-nematic phase transition in the Lebwohl-Lasher model from density of states simulations. Journal of Chemical Physics, 136(23). https://doi.org/10.1063/1.4722209

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