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通过相互作用密度的极化来计算电子相关。

Electron correlation by polarization of interacting densities.

机构信息

Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695, USA.

出版信息

J Chem Phys. 2017 Feb 14;146(6):064113. doi: 10.1063/1.4975329.

Abstract

Coulomb interactions that occur in electronic structure calculations are correlated by allowing basis function components of the interacting densities to polarize dynamically, thereby reducing the magnitude of the interaction. Exchange integrals of molecular orbitals are not correlated. The modified Coulomb interactions are used in single-determinant or configuration interaction calculations. The objective is to account for dynamical correlation effects without explicitly introducing higher spherical harmonic functions into the molecular orbital basis. Molecular orbital densities are decomposed into a distribution of spherical components that conserve the charge and each of the interacting components is considered as a two-electron wavefunction embedded in the system acted on by an average field Hamiltonian plus r. A method of avoiding redundancy is described. Applications to atoms, negative ions, and molecules representing different types of bonding and spin states are discussed.

摘要

在电子结构计算中,库仑相互作用通过允许相互作用密度的基函数分量动态极化来关联,从而减小相互作用的大小。分子轨道的交换积分不相关。修改后的库仑相互作用用于单行列式或组态相互作用计算。目的是在不明确将更高阶球谐函数引入分子轨道基的情况下,考虑动态相关效应。分子轨道密度分解为球形分量的分布,这些球形分量保持电荷守恒,并且每个相互作用的分量都被视为嵌入在由平均场哈密顿量和 r 作用的系统中的双电子波函数。描述了一种避免冗余的方法。讨论了应用于不同键合和自旋状态的原子、负离子和分子。

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