1975The Journal of Chemical PhysicsRequires access

Direct correlation function: Hard sphere fluid

Douglas Henderson, E. W. Grundke

Open publisher page 294 citations

Abstract

The direct correlation function c (r) and in particular the ’’tail’’ of the direct correlation function d (r) are calculated for hard spheres from reliable expressions for the radial distribution function of the hard sphere fluid. This permits a direct examination of the Percus–Yevick (PY) approximation d (r) =0. It is found that the PY approximation is very poor over-all but fairly reasonable in the most important region r ? σ. Finally a simple but relable parametrization of d (r) for hard spheres is proposed.

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What this paper is about

The direct correlation function c (r) and in particular the ’’tail’’ of the direct correlation function d (r) are calculated for hard spheres from reliable expressions for the radial distribution function of the hard sphere fluid. This permits a direct examination of the Percus–Yevick (PY) approximation d (r) =0. It is found that the PY approximation is very poor over-all but fairly reasonable in the most important region r ? σ. Finally a simple but relable parametrization of d (r) for hard spheres is proposed.

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OpenAlex reports 294 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The direct correlation function c (r) and in particular the ’’tail’’ of the direct correlation function d (r) are calculated for hard spheres from reliable expressions for the radial distribution function of the hard sphere fluid. This permits a direct examination of the Percus–Yevick (PY) approximation d (r) =0. It is found that the PY approximation is very poor over-all but fairly reasonable in the most important region r ? σ. Finally a simple but relable parametrization of d (r) for hard spheres is proposed.

Key concepts: Hard spheres, Parametrization (atmospheric modeling), Radial distribution function, Correlation function (quantum field theory), SPHERES, Function (biology), Simple (philosophy), Physics

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