Hydrodynamic time correlation functions for a Lennard-Jones fluid
- 1 July 1988
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review A
- Vol. 38 (1) , 271-287
- https://doi.org/10.1103/physreva.38.271
Abstract
Four time correlation functions of a Lennard-Jones (LJ) fluid at a reduced density of =n and a reduced temperature of = have been determined numerically using molecular dynamics. They were computed as a function of wave number k for reduced wave numbers 0≤k and for reduced times 0≤t/ is an average collision time. From these four, all 25 correlation functions can be derived between three conserved and two nonconserved quantities: the number density, energy density, longitudinal velocity, momentum flux, and energy flux, respectively. They can be fitted consistently by five exponentials that correspond to the five eigenmodes of a 5×5 k-dependent, but not t-dependent, matrix based on the above-mentioned five quantities. Three of these eigenmodes are extensions of the usual hydrodynamic modes and suffice to describe the density-density correlation function alone. A comparison with previous work on Lennard-Jones, noble-gas, and hard-sphere fluids is made.
Keywords
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