Determination of the friction coefficient via the force autocorrelation function. A molecular dynamics investigation for a dense Lennard-Jones fluid |
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Authors: | R. Vogelsang C. Hoheisel |
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Affiliation: | (1) Theoretische Chemie, Ruhruniversität Bochum, 4630 Bochum, West Germany |
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Abstract: | For a large region of dense fluid states of a Lennard-Jones system, we have calculated the friction coefficient by the force autocorrelation function of a Brownian-type particle by molecular dynamics (MD). The time integral over the force autocorrelation function showed an interesting behavior and the expected plateau value when the mass of the Brownian particle was chosen to be about a factor of 100 larger than the mass of the fluid particle. Sufficient agreement was found for the friction coefficient calculated by this way and that obtained by MD calculations of the self-diffusion coefficient using the common relation between these coefficients. Furthermore, a modified friction coefficient was determined by integration of the force autocorrelation function up to the first maximum. This coefficient can successfully be used to derive a reasonable soft part of the friction coefficient necessary for the Rice-Allnatt approximation for the shear viscosity of simple liquids. |
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Keywords: | Transport coefficients kinetic theory Brownian dynamics time-dependent properties of liquids and fluids molecular dynamics diffusion |
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