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局部多参考组态相互作用的规模扩展修正

Size extensive modification of local multireference configuration interaction.

作者信息

Venkatnathan Arun, Szilva Andrew B, Walter Derek, Gdanitz Robert J, Carter Emily A

机构信息

Department of Chemistry and Biochemistry, Box 951569, University of California, Los Angeles, Los Angeles, California 90095-1569, USA.

出版信息

J Chem Phys. 2004 Jan 22;120(4):1693-704. doi: 10.1063/1.1635796.

Abstract

We recently developed a reduced scaling multireference configuration interaction (MRCI) method based on local correlation in the internal (occupied) and external (virtual) orbital spaces. This technique can be used, e.g., to predict bond dissociation energies in large molecules with reasonable accuracy. However, the inherent lack of size extensivity of truncated CI is a disadvantage that in principle worsens as the system size grows. Here we implement an a priori size-extensive modification of local MRCI known as the averaged coupled pair functional (ACPF) method. We demonstrate that local MR-ACPF recovers more correlation energy than local MRCI, in keeping with trends observed previously for nonlocal ACPF. We test the size extensivity of local ACPF on noninteracting He atoms and a series of hydrocarbons. Basis set and core correlation effects are explored, as well as bond breaking in a variety of organic molecules. The local MR-ACPF method proves to be a useful tool for investigating large molecules and represents a further improvement in predictive accuracy over local MRCI.

摘要

我们最近基于内部(占据)和外部(虚拟)轨道空间中的局部相关性,开发了一种缩减规模的多参考组态相互作用(MRCI)方法。例如,该技术可用于以合理的精度预测大分子中的键解离能。然而,截断CI固有的规模扩展性不足是一个缺点,原则上会随着系统规模的增大而恶化。在此,我们实现了一种对局部MRCI的先验规模扩展修正,即平均耦合对函数(ACPF)方法。我们证明,局部MR - ACPF比局部MRCI能恢复更多的相关能,这与之前在非局部ACPF中观察到的趋势一致。我们在非相互作用的氦原子和一系列碳氢化合物上测试了局部ACPF的规模扩展性。探索了基组和核心相关效应,以及各种有机分子中的键断裂情况。局部MR - ACPF方法被证明是研究大分子的有用工具,并且在预测精度上比局部MRCI有进一步提高。

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