The results are presented of Gibbs ensemble Monte Carlo (GEMC) simulations examining the nematic-isotropic (N-I) coexistence envelope of a liquid crystal mixture. The system studied is a 50: 50 mixture of 1000 generalized Gay-Berne particles with axial ratios 2.0:1 and 2.5:1. For this system, stable N-I coexistence is observed over run lengths in excess of 5 x 10(5) GEMC sweeps. There is unambiguous evidence of fractionation, the mole fractions of long particles in the coexisting phases typically differing by 11%. The measured coexistence envelope does not conform to the lens shape predicted by Onsager theory; qualitative finite size arguments are given in explanation of this distortion
Results are presented from a series of simulations undertaken to investigate the effect of adding sm...
We have studied a system of polydisperse, charged colloidal gibbsite platelets with a bimodal distri...
The isotropic-nematic phase equilibria of linear hard-sphere chains and binary mixtures of them are ...
Results are presented from a variety of molecular simulations of phase coexistence using the well es...
Monte Carlo computer simulations were used to investigate the phase behaviour of a Lebwohl-Lasher bi...
Results are presented from a variety of molecular simulations of phase coexistence using the well es...
We report results from a constant NVE molecular dynamics simulation of a 50:50 mixture of Gay-Berne ...
This Thesis is dedicated to computer simulation investigations of the phase behaviour of binary and...
Monte Carlo simulations were performed in the NPT ensemble and in an expanded version of the Gibbs e...
We present results from constant-NPT molecular dynamics simulations of bi-disperse liquid crystal mi...
Monte Carlo simulations were performed in the NPT ensemble and in an expanded version of the Gibbs e...
Monte Carlo simulations in the isothermal-isobaric ensemble are used to investigate the formation of...
We study the phase behavior of model colloidal systems composed of infinitely thin hard platelets, w...
Results are presented from Monte Carlo simulations of bulk mixtures of hard Gaussian overlap particl...
Results are presented from Monte Carlo simulations of bulk mixtures of hard Gaussian overlap particl...
Results are presented from a series of simulations undertaken to investigate the effect of adding sm...
We have studied a system of polydisperse, charged colloidal gibbsite platelets with a bimodal distri...
The isotropic-nematic phase equilibria of linear hard-sphere chains and binary mixtures of them are ...
Results are presented from a variety of molecular simulations of phase coexistence using the well es...
Monte Carlo computer simulations were used to investigate the phase behaviour of a Lebwohl-Lasher bi...
Results are presented from a variety of molecular simulations of phase coexistence using the well es...
We report results from a constant NVE molecular dynamics simulation of a 50:50 mixture of Gay-Berne ...
This Thesis is dedicated to computer simulation investigations of the phase behaviour of binary and...
Monte Carlo simulations were performed in the NPT ensemble and in an expanded version of the Gibbs e...
We present results from constant-NPT molecular dynamics simulations of bi-disperse liquid crystal mi...
Monte Carlo simulations were performed in the NPT ensemble and in an expanded version of the Gibbs e...
Monte Carlo simulations in the isothermal-isobaric ensemble are used to investigate the formation of...
We study the phase behavior of model colloidal systems composed of infinitely thin hard platelets, w...
Results are presented from Monte Carlo simulations of bulk mixtures of hard Gaussian overlap particl...
Results are presented from Monte Carlo simulations of bulk mixtures of hard Gaussian overlap particl...
Results are presented from a series of simulations undertaken to investigate the effect of adding sm...
We have studied a system of polydisperse, charged colloidal gibbsite platelets with a bimodal distri...
The isotropic-nematic phase equilibria of linear hard-sphere chains and binary mixtures of them are ...