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首页> 外文期刊>The Journal of Chemical Physics >Many-body exchange-overlap interactions in rare gases and water
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Many-body exchange-overlap interactions in rare gases and water

机译:稀有气体和水中的多体交换重叠相互作用

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摘要

Generalized-gradient approximations (GGAs) of density-functional theory can suffer from substantial many-body errors in molecular systems interacting through weak non-covalent forces. Here, the errors of a range of GGAs for the 3-body energies of trimers of rare gases and water are investigated. The patterns of 3-body errors are similar for all the systems, and are related to the form of the exchange-enhancement factor F-X(x) at large reduced gradient x, which also governs 2-body exchange-overlap errors. However, it is shown that the 3-body and 2-body errors depend in opposite ways on FX(x), so that they tend to cancel in molecular aggregates. Embedding arguments are used to achieve a partial separation of contributions to 3-body error from polarization, non-local correlation, and exchange, and it emerges that exchange is a major contributor. The practical importance of beyond-2-body errors is illustrated by the energetics of the water hexamer. An analysis of exchange-energy distributions is used to elucidate why 2-body and 3-body errors of GGAs depend in opposite ways on F-X(x). The relevance of the present analysis to a range of other molecular systems is noted. (C) 2014 AIP Publishing LLC.
机译:密度泛函理论的广义梯度近似(GGAs)在分子系统中通过弱的非共价力相互作用时会遭受大量的多体错误。在此,研究了稀有气体和水的三聚体三体能量的一系列GGA的误差。 3体错误的模式对于所有系统都是相似的,并且与减小梯度较大的x时交换增强因子F-X(x)的形式有关,这也决定了2体交换重叠错误。但是,表明3体和2体错误以相反的方式取决于FX(x),因此它们倾向于在分子聚集体中抵消。嵌入参数用于实现对三体误差的贡献与极化,非局部相关性和交换的部分分离,并且可以看出交换是主要的贡献者。六聚体的能量学说明了超出2体误差的实际重要性。交换能量分布的分析用于阐明为何GGA的2体和3体错误以相反的方式依赖于F-X(x)。指出了本分析与一系列其他分子系统的相关性。 (C)2014 AIP Publishing LLC。

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