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Three-body symmetry-adapted perturbation theory based on Kohn-Sham description of the monomers

机译:基于Kohn-Sham单体描述的三体对称自适应摄动理论

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An implementation of three-body symmetry-adapted perturbation theory (SAPT) of intermolecular interactions based on Kohn-Sham (KS) description of monomers with dispersion and induction nonadditive energies obtained from KS frequency-dependent density susceptibilities [SAPT(DFT)] is presented. Using the density-fitting approach, the nonadditive dispersion energy can be obtained with O(N-5) scaling with respect to the system size, the best scaling among all available methods of evaluating this quantity. Numerical results are reported for the helium, argon, water, and benzene trimers. The nonadditive energy computed for these systems is in a good agreement with benchmarks. Some hybrid perturbational-supermolecular approaches are proposed that can provide-with only O(N-5) scaling-nonadditive energies with accuracy comparable to more expensive supermolecular methods, such as the third-order Moller-Plesset perturbation theory. Such approaches can be used for studying nonadditive effects in systems larger than it is currently possible with supermolecular methods at a level high enough to capture all essential components of the three-body interaction energy. (C) 2007 American Institute of Physics.
机译:提出了一种基于Kohn-Sham(KS)描述分子间相互作用的三体对称对称扰动理论(SAPT)的实现,该单体具有从KS频率依赖的密度磁化率[SAPT(DFT)]获得的具有分散和感应非加能的单体。使用密度拟合方法,可以使用O(N-5)缩放比例获得相对于系统大小的非加性色散能量,这是评估此数量的所有可用方法中最佳的缩放比例。报告了氦,氩,水和苯三聚体的数值结果。为这些系统计算的非加性能量与基准非常吻合。提出了一些混合的摄动-超分子方法,这些方法只能提供O(N-5)结垢-非加和能量,其精确度可与更昂贵的超分子方法相媲美,例如三阶Moller-Plesset摄动理论。这种方法可用于研究比当前使用超分子方法大得多的系统中的非加性效应,该系统的水平应足以捕获三体相互作用能的所有基本成分。 (C)2007美国物理研究所。

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