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Force‐field parametrization based on radial and energy distribution functions

机译:基于半径和能量分布函数的力场参数化

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摘要

We propose a novel force‐field‐parametrization procedure that fits the parameters of potential functions in a manner that the pair distribution function (DF) of molecules derived from candidate parameters can reproduce the given target DF. Conventionally, approaches to minimize the difference between the candidate and target DFs employ radial DFs (RDF). RDF itself has been reported to be insufficient for uniquely identifying the parameters of a molecule. To overcome the weakness, we introduce energy DF (EDF) as a target DF, which describes the distribution of the pairwise energy of molecules. We found that the EDF responds more sensitively to a small perturbation in the pairwise potential parameters and provides better fitting accuracy compared to that of RDF. These findings provide valuable insights into a wide range of coarse graining methods, which determine parameters using information obtained from a higher‐level calculation than that of the developed force field. © 2019 The Authors. Journal of Computational Chemistry published by Wiley Periodicals, Inc.
机译:我们提出了一种新颖的力场参数化程序,该程序适合于潜在函数的参数,使得从候选参数派生的分子对的分布函数(DF)可以再现给定的目标DF。传统上,最小化候选DF与目标DF之间差异的方法采用径向DF(RDF)。据报道,RDF本身不足以唯一地识别分子的参数。为了克服这一弱点,我们引入了能量DF(EDF)作为目标DF,它描述了分子对能量的分布。我们发现,与RDF相比,EDF对成对电势参数中的小扰动响应更为灵敏,并提供了更好的拟合精度。这些发现为广泛的粗粒度方法提供了宝贵的见识,这些方法使用比发达的力场更高级别的计算获得的信息来确定参数。 ©2019作者。 Wiley Periodicals,Inc.发布的《计算化学杂志》。

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