Memory functions and the calculation of dynamical properties of atomic liquids

C. Hoheisel
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引用次数: 19

Abstract

The memory function approach is discussed with respect to the representation of computer generated time correlation functions. Single-particle and collective properties of the Lennard-Jones fluid are considered, and the usefulness of directly evaluated memory functions and model memory functions is discussed. The scatterirng functions analysis is restricted to the medium and small wave vector range in order to demonstrate the approximate hydrodynamic behaviour of these functions, that can be exploited to determine transport coefficients. Furthermore, the method of determining thermal transport coefficients via a single Gaussian memory function is presented in direct comparison with molecular dynamics results. Experimental aspects are considered. Finally a limited comparison of results for the Lennard-Jones and the hard sphere fluids is given.

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记忆函数与原子液体动力学性质的计算
针对计算机生成的时间相关函数的表示,讨论了记忆函数方法。考虑了Lennard-Jones流体的单粒子和集体性质,讨论了直接求值记忆函数和模型记忆函数的有效性。散射函数分析被限制在中、小波矢量范围内,以证明这些函数的近似水动力特性,可以用来确定输运系数。此外,我们还提出了通过单个高斯记忆函数确定热传递系数的方法,并与分子动力学结果进行了直接比较。实验方面的考虑。最后对Lennard-Jones流体和硬球流体的结果进行了有限的比较。
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