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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Two-electron integrations in the quantum theory of atoms in molecules with correlated wave functions
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Two-electron integrations in the quantum theory of atoms in molecules with correlated wave functions

机译:具有相关波函数的分子原子量子理论中的双电子积分

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摘要

A recent method proposed to compute two-electron integrals over arbitrary regions of space [Martin Pendas, A. et al., J Chem Phys 2004, 120, 4581] is extended to deal with correlated wave functions. To that end, we use a monadic factorization of the second-order reduced density matrix originally proposed by E. R. Davidson [Chem Phys Lett 1995, 246, 209] that achieves a full separation of the interelectronic components into one-electron terms. The final computational effort is equivalent to that found in the integration of a one determinant wave function with as many orbitals as occupied functions in the correlated expansion. Similar strategies to extract the exchange and self-interaction contributions from the two-electron repulsion are also discussed, and several numerical results obtained in a few test systems are summarized. (C) 2005 Wiley Periodicals, Inc.
机译:提出了一种在空间的任意区域上计算两电子积分的最新方法[Martin Pendas,A.等人,J Chem Phys 2004,120,4581],以处理相关的波函数。为此,我们使用E. R. Davidson最初提出的二阶降低密度矩阵的单因子分解[Chem Phys Lett 1995,246,209],该过程实现了将电子间成分完全分离为单电子项。最终的计算工作量等于在相关扩展中将一个行列式波函数与占据的函数数量一样多的轨道进行积分所得到的结果。还讨论了从双电子排斥中提取交换和自相互作用贡献的相似策略,并总结了在一些测试系统中获得的一些数值结果。 (C)2005 Wiley期刊公司

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