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相互作用的布朗粒子动力学:一种图解表述。

Dynamics of interacting Brownian particles: a diagrammatic formulation.

作者信息

Szamel Grzegorz

机构信息

Department of Chemistry, Colorado State University, Fort Collins, Colorado 80525, USA.

出版信息

J Chem Phys. 2007 Aug 28;127(8):084515. doi: 10.1063/1.2759487.

Abstract

We present a diagrammatic formulation of a theory for the time dependence of density fluctuations in equilibrium systems of interacting Brownian particles. To facilitate derivation of the diagrammatic expansion, we introduce a basis that consists of orthogonalized many-particle density fluctuations. We obtain an exact hierarchy of equations of motion for time-dependent correlations of orthogonalized density fluctuations. To simplify this hierarchy we neglect contributions to the vertices from higher-order cluster expansion terms. An iterative solution of the resulting equations can be represented by diagrams with three- and four-leg vertices. We analyze the structure of the diagrammatic series for the time-dependent density correlation function and obtain a diagrammatic interpretation of reducible and irreducible memory functions. The one-loop self-consistent approximation for the latter function coincides with mode-coupling approximation for Brownian systems that was derived previously using a projection operator approach.

摘要

我们给出了一个关于相互作用布朗粒子平衡系统中密度涨落时间依赖性理论的图解表述。为便于推导图解展开式,我们引入了一个由正交化多粒子密度涨落组成的基。我们得到了正交化密度涨落随时间变化的关联函数的精确运动方程层次结构。为简化这个层次结构,我们忽略高阶簇展开项对顶点的贡献。所得方程的迭代解可以用具有三腿和四腿顶点的图来表示。我们分析了随时间变化的密度关联函数的图解级数结构,并得到了可约和不可约记忆函数的图解解释。后一个函数的单圈自洽近似与先前使用投影算符方法导出的布朗系统的模式耦合近似一致。

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