论文标题

库仑孔的范围分离

Range separation of the Coulomb hole

论文作者

Via-Nadal, Mireia, Rodríguez-Mayorga, Mauricio, Ramos-Cordoba, Eloy, Matito, Eduard

论文摘要

库仑孔分为两个组成部分,其中一个在长互电子分离(HCI)和另一个在短距离(HCII)上是主要的,在各种示例中都进行了详尽的分析,这些示例旨在提出这种方法最相关的特征,以及如何用于捕获电子相关方法的有效方法。 We show that hcI , which only depends on the first-order reduced density matrix, can be used to identify molecules with a predominant nondynamic correlation regime and differentiate between two types of nondynamic correlation, types A and B. Through the asymptotic properties of the hole components, we explain how hcI can retrieve the long-range part of electron correlation.我们以最小的基础集对氢分子进行详尽的分析,将孔贡献分解为自旋成分。我们还分析了呈现分散相互作用的最简单分子,以及HCII如何帮助识别它。对不同自旋状态的几个原子的研究表明,库仑孔成分区分了从整个孔中不明显的相关状态。这项工作的结果有望有助于开发有效捕获电子相关性的新电子结构方法。

A range-separation of the Coulomb hole into two components, one of them being predominant at long interelectronic separations (hcI ) and the other at short distances (hcII ), is exhaustively analyzed throughout various examples that put forward the most relevant features of this approach and how they can be used to develop efficient ways to capture electron correlation. We show that hcI , which only depends on the first-order reduced density matrix, can be used to identify molecules with a predominant nondynamic correlation regime and differentiate between two types of nondynamic correlation, types A and B. Through the asymptotic properties of the hole components, we explain how hcI can retrieve the long-range part of electron correlation. We perform an exhaustive analysis of the hydrogen molecule in a minimal basis set, dissecting the hole contributions into spin components. We also analyze the simplest molecule presenting a dispersion interaction and how hcII helps identify it. The study of several atoms in different spin states reveals that the Coulomb hole components distinguish correlation regimes that are not apparent from the entire hole. The results of this work hold the promise to aid in developing new electronic structure methods that efficiently capture electron correlation.

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