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Beyond Born-Mayer: Improved Models for Short-Range Repulsion in ab Initio Force Fields

机译:超越天生的梅耶:从头算力场中短程排斥的改进模型

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Short-range repulsion within intermolecular force fields is conventionally described by either Lennard-Jones (A/r(12)) or Born-Mayer (A exp(-Br)) forms. Despite their widespread use, these simple functional forms are often unable to describe the interaction energy accurately over a broad range of intermolecular distances, thus creating challenges in the development of ab initio force fields and potentially leading to decreased accuracy and transferability. Herein, we derive a novel short-range functional form based on a simple Slater-like model of overlapping atomic densities and an iterated stockholder atom (ISA) partitioning of the molecular electron density. We demonstrate that this Slater-ISA methodology yields a more accurate, transferable, and robust description of the short-range interactions at minimal additional computational cost compared to standard Lennard-Jones or Born-Mayer approaches. Finally, we show how this methodology can be adapted to yield the standard Born-Mayer functional form while still retaining many of the advantages of the Slater-ISA approach.
机译:分子间力场内的短程排斥通常由Lennard-Jones(A / r(12))或Born-Mayer(A exp(-Br))形式描述。尽管它们被广泛使用,但这些简单的功能形式通常无法在较大的分子间距离范围内准确地描述相互作用能,从而在从头算力场的发展中提出了挑战,并可能导致准确性和可传递性下降。本文中,我们基于重叠原子密度的简单Slater样模型和分子电子密度的迭代股东原子(ISA)划分,得出了一种新颖的短程功能形式。我们证明,与标准Lennard-Jones或Born-Mayer方法相比,此Slater-ISA方法可在最小的附加计算成本的情况下对短程相互作用进行更准确,可传递和更可靠的描述。最后,我们展示了如何将该方法应用于标准的Born-Mayer功能形式,同时仍保留Slater-ISA方法的许多优点。

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