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A fundamental measure theory for the sticky hard sphere fluid

Abstract:
We construct a density functional theory (DFT) for the sticky hard sphere (SHS) fluid which, like Rosenfeld's fundamental measure theory (FMT) for the hard sphere fluid [Phys. Rev. Lett. {\bf 63}, 980 (1989)], is based on a set of weighted densities and an exact result from scaled particle theory (SPT). It is demonstrated that the excess free energy density of the inhomogeneous SHS fluid $\Phi_{\text{SHS}}$ is uniquely defined when (a) it is solely a function of the weighted densities from Kierlik and Rosinberg's version of FMT [Phys. Rev. A {\bf 42}, 3382 (1990)], (b) it satisfies the SPT differential equation, and (c) it yields any given direct correlation function (DCF) from the class of generalized Percus-Yevick closures introduced by Gazzillo and Giacometti [J. Chem. Phys. {\bf 120}, 4742 (2004)]. The resulting DFT is shown to be in very good agreement with simulation data. In particular, this FMT yields the correct contact value of the density profiles with no adjustable parameters. Rather than requiring higher order DCFs, such as perturbative DFTs, our SHS FMT produces them. Interestingly, although equivalent to Kierlik and Rosinberg's FMT in the case of hard spheres, the set of weighted densities used for Rosenfeld's original FMT is insufficient for constructing a DFT which yields the SHS DCF.

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Publisher copy:
10.1063/1.3528226

Authors



Journal:
J. Chem. Phys. More from this journal
Volume:
134
Issue:
1
Pages:
014506
Publication date:
2010-10-08
DOI:
ISSN:
0021-9606


Language:
English
Keywords:
Pubs id:
pubs:428098
UUID:
uuid:c1c45288-ddd2-48c6-bfb7-674e1c17c1e9
Local pid:
pubs:428098
Source identifiers:
428098
Deposit date:
2013-11-16

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