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Calculation of van der Waals coefficients in hydrodynamic approach to time-dependent density functional theory

机译:时变密度泛函理论的水动力方法计算范德华系数

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In this paper we employ hydrodynamic formulation of time-dependent density-functional theory to obtain coefficient C-6 of the long-range part of the van der Waals interaction between alkali-metal clusters of large sizes. Such a calculation becomes computationally very demanding in the orbital-based Kohn-Sham formalism, but is quite simple in the hydrodynamic approach. This is because in hydrodynamic formulation, electron density and current density, rather than the orbitals, are employed as basic variables. We show that for intercations between the clusters of same sizes, C-6 scales as the sixth power of the cluster radius and approaches the classically predicted value for large size clusters. (C) 2002 American Institute of Physics. [References: 41]
机译:在本文中,我们采用时变密度泛函理论的流体力学公式来获得大尺寸碱金属簇之间范德华相互作用的远距离部分的系数C-6。这种计算在基于轨道的Kohn-Sham形式主义中对计算的要求很高,但是在流体动力学方法中非常简单。这是因为在流体动力学公式中,电子密度和电流密度而不是轨道被用作基本变量。我们表明,对于大小相同的聚类之间的相互作用,C-6的缩放比例是聚类半径的六次方,并且接近于大型聚类的经典预测值。 (C)2002美国物理研究所。 [参考:41]

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