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首页> 外文期刊>The Journal of Chemical Physics >The divide-expand-consolidate family of coupled cluster methods: Numerical illustrations using second order M?ller-Plesset perturbation theory
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The divide-expand-consolidate family of coupled cluster methods: Numerical illustrations using second order M?ller-Plesset perturbation theory

机译:耦合聚类方法的分-扩张-固结族:使用二阶M?ller-Plesset微扰理论的数值说明

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摘要

Previously, we have introduced the linear scaling coupled cluster (CC) divide-expand-consolidate (DEC) method, using an occupied space partitioning of the standard correlation energy. In this article, we show that the correlation energy may alternatively be expressed using a virtual space partitioning, and that the Lagrangian correlation energy may be partitioned using elements from both the occupied and virtual partitioning schemes. The partitionings of the correlation energy leads to atomic site and pair interaction energies which are term-wise invariant with respect to an orthogonal transformation among the occupied or the virtual orbitals. Evaluating the atomic site and pair interaction energies using local orbitals leads to a linear scaling algorithm and a distinction between Coulomb hole and dispersion energy contributions to the correlation energy. Further, a detailed error analysis is performed illustrating the error control imposed on all components of the energy by the chosen energy threshold. This error control is ultimately used to show how to reduce the computational cost for evaluating dispersion energy contributions in DEC.
机译:以前,我们已经使用标准相关能量的占用空间划分引入了线性缩放耦合聚类(CC)划分-扩展-合并(DEC)方法。在本文中,我们展示了可以使用虚拟空间分区来表示相关能量,并且可以使用已占用和虚拟分区方案中的元素对拉格朗日相关能量进行分区。相关能的划分导致原子位和对相互作用能,它们相对于被占据或虚拟轨道之间的正交变换是逐项不变的。使用局部轨道评估原子位和对相互作用能导致线性比例缩放算法,并区分库仑空穴和色散能量对相关能量的贡献。此外,执行详细的误差分析,以说明通过所选的能量阈值对能量的所有分量施加的误差控制。该误差控制最终用于显示如何减少评估DEC中的分散能量贡献的计算成本。

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