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Determining liquid structure from the tail of the direct correlation function

机译:从直接相关函数的尾部确定液体结构

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In important early work. Stell showed that one can determine the pair correlation function h(r) of the hard-sphere fluid for all distances r by specifying only the "tail" of the direct Correlation function c(r) at separations greater than the hard-core diameter. We extend this idea in a very natural way to potentials with a soft repulsive core of finite extent and a weaker and longer ranged tail. We introduce a new continuous function T(r) which reduces exactly to the tail of c(r) outside the (soft) core region anti show that both h(r) and c(r) depend only on the "out projection" of T(r): i.e., the product of the Boltzmann factor of the repulsive core potential times T(r). Standard integral equation closures can thus be reinterpreted and assessed in terms of their predictions for the tail of c(r) and simple approximations for its form suggest new closures. A new and very efficient variational method is proposed for solving the Ornstein-Zernike equation given an approximation for the tail of c. Initial applications of these ideas to the Lennard-Jones and the hard-core Yukawa fluid are discussed. [References: 47]
机译:在重要的早期工作中。斯泰尔(Stell)表明,通过仅指定大于硬核直径的距离的直接相关函数c(r)的“尾部”,就可以确定所有距离r的硬球流体的对相关函数h(r)。我们以非常自然的方式将这种想法扩展到具有有限程度的软排斥核心以及较弱和较远距离的尾巴的电位。我们引入了一个新的连续函数T(r),该函数恰好减小了c(r)核心区域(软区域)外部的尾部。anti表明,h(r)和c(r)都仅依赖于c T(r):即排斥核势的玻尔兹曼因子乘以T(r)的乘积。因此,可以根据对c(r)尾部的预测来重新解释和评估标准积分方程的闭包,并且对其形式的简单近似也可以提出新的闭包。提出了一种新的非常有效的变分方法来求解Ornstein-Zernike方程,给出c的尾部近似值。讨论了这些想法在Lennard-Jones和硬核Yukawa流体中的最初应用。 [参考:47]

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