Published July 1985 | Version v1
Journal article

Molecular-dynamics calculations of the velocity autocorrelation function: hard-sphere results

  • 1. Los Alamos National Lab., NM

Description

The velocity autocorrelation function for the hard-sphere fluid is computed for ten values of the volume ranging from 25 to 1.6 times the close-packed volume V0 for systems of from 108 to 4000 hard spheres, using a Monte Carlo, molecular-dynamics technique. The results are compared with the theoretical predictions of the mode-coupling theory, modified to take into account the finite size of the system and the periodic boundary conditions. The data are found to be in good agreement with the theory, evaluated using Enskog values for the transport coefficients, for values of the time greater than roughly 15 to 30 mean free times (depending on density), for volumes as small as 2 V0. The higher-density results do not agree with the theory, unless the actual transport coefficients are used in the theory. The latter version of the theory, however, fails to fit the data at lower densities, except at very long times. To answer the recent critique by Fox, the data are further compared with the theory over time intervals for which the molecular-dynamics trajectories retain some measure of accuracy. The agreement between the data and the theory is largely unaffected, except at a volume 1.8 V0 for which there is a marginally significant difference at very long times only. 12 references, 10 figures, 4 tables

Additional details

Publishing Information

Journal Title
Phys. Rev., A
Journal Volume
32
Journal Issue
1
Series
Phys. Rev., A.
Journal Page Range
412-422
ISSN
0556-2791
CODEN
PLRAA

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
18058579
Subject category
S74: ATOMIC AND MOLECULAR PHYSICS;
Descriptors DEI
BOUNDARY CONDITIONS; CORRELATION FUNCTIONS; MANY-BODY PROBLEM; MOLECULAR MODELS; MONTE CARLO METHOD; TRANSPORT THEORY; VELOCITY
Descriptors DEC
FUNCTIONS; MATHEMATICAL MODELS