Phase transition and director fluctuations in the three-dimensional Lebwohl-Lasher model of liquid crystals
- 10 December 1993
- journal article
- research article
- Published by Taylor & Francis in Molecular Physics
- Vol. 80 (5) , 1195-1221
- https://doi.org/10.1080/00268979300102981
Abstract
Monte Carlo computer simulation techniques are used to study the orientational phase transition in the three-dimensional Lebwohl-Lasher model which couples molecular rotors placed on a cubic lattice by the potential P 2(cos ϑ ij ). The orientational transition is a model of the nematic-isotropic phase transition in liquid crystals. The simulations involve the determination of energy and order parameter distribution functions which permit free energy functions to be derived. The data have been analysed by finite size scaling methods to reveal the nature of the phase transition which is found to be weakly first order with stability limits of the nematic and isotropic phases being extremely close to the equilibrium transition temperature, in good agreement with experimental studies of room temperature nematogens. Results are reported for the specific heat, the axial and biaxial susceptibilities, as well as the enthalpy and nematic order parameter discontinuity at the transition. It is shown that the inclusion of a term P 4(cosϑ ij ) in the potential enhances the first-order character of the transition and displaces the stability limits further from the equilibrium transition temperature. The director fluctuations have been analysed, and it is found that, whereas the fluctuations in the isotropic phase follow ordinary Brownian motion, the fluctuations in the nematic phase correspond to fractional Brownian motion. By introducing a symmetry-breaking field, -h 2 cos ϑ i 2, a field-induced crossover between fractional and normal Brownian motion is observed in agreement with recent neutron scattering studies on deuterated p-azoxyanisole.Keywords
This publication has 31 references indexed in Scilit:
- Head-tail asymmetry and ferroelectricity in uniaxial liquid crystalsMolecular Physics, 1991
- A Monte Carlo investigation of the Lebwohl-Lasher lattice model in the vicinity of its orientational phase transitionMolecular Physics, 1986
- Free Energies in the Landau and Molecular Field ApproachesLiquid Crystals, 1986
- A cluster Monte Carlo method for the simulation of anisotropic systemsThe Journal of Chemical Physics, 1986
- Temperature dependence of the enthalpy and the heat capacity of the liquid-crystal octylcyanobiphenyl (8CB)Physical Review A, 1982
- Computer simulation studies of anisotropic systemsMolecular Physics, 1982
- Nematic-Liquid-Crystal Order—A Monte Carlo CalculationPhysical Review A, 1972
- Monte Carlo Results for a Discrete-Lattice Model of Nematic OrderingPhysical Review A, 1972
- Pretransitional Phenomena in the Isotropic Phase of a Nematic Liquid CrystalPhysical Review Letters, 1970
- Eine einfache molekular-statistische Theorie der nematischen kristallinflüssigen Phase. Teil l1.Zeitschrift für Naturforschung A, 1959