paper

The bulk viscosity of a symmetrical Lennard--Jones mixture above and at liquid--liquid coexistence: A computer simulation study

arXiv:cond-mat/0402521

Abstract

A Lennard--Jones model of a binary dense liquid (A,B) with a symmetrical miscibility gap is investigated by means of computer simulation methods. Semigrand--canonical Monte Carlo simulations yield the phase diagram in the -- plane (: temperature, : concentration of A or B particles) as well as equilibrated configurations at coexistence. Then Molecular Dynamics simulations use these configurations to determine static properties (isothermal compressibility and concentration susceptibility ) as well as the shear and the bulk viscosity and , respectively. The latter quantities are calculated along a path approaching the coexistence line from high temperatures in the one--phase region and ending at a state at the coexistence line about 15% below the critical point. We find that and increase significantly near the coexistence line reflecting the vicinity of the critical point. Whereas exhibits a weak temperature dependence, increases significantly near the coexistence curve.

19 pages including 6 figures