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首页> 外文期刊>The Journal of Chemical Physics >SASS: A symmetry adapted stochastic search algorithm exploiting site symmetry
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SASS: A symmetry adapted stochastic search algorithm exploiting site symmetry

机译:SASS:一种利用站点对称性的,适应对称性的随机搜索算法

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摘要

A simple symmetry adapted search algorithm (SASS) exploiting point group symmetry increases the efficiency of systematic explorations of complex quantum mechanical potential energy surfaces. In contrast to previously described stochastic approaches, which do not employ symmetry, candidate structures are generated within simple point groups, such as C-2, C-s, and C-2v. This facilitates efficient sampling of the 3N-6 Pople's dimensional configuration space and increases the speed and effectiveness of quantum chemical geometry optimizations. Pople's concept of framework groups [J. Am. Chem. Soc. 102, 4615 (1980)] is used to partition the configuration space into structures spanning all possible distributions of sets of symmetry equivalent atoms. This provides an efficient means of computing all structures of a given symmetry with minimum redundancy. This approach also is advantageous for generating initial structures for global optimizations via genetic algorithm and other stochastic global search techniques. Application of the SASS method is illustrated by locating 14 low-lying stationary points on the cc-pwCVDZ ROCCSD(T) potential energy surface of Li5H2. The global minimum structure is identified, along with many unique, nonintuitive, energetically favorable isomers.
机译:利用点群对称性的简单对称适应搜索算法(SASS)可提高系统探索复杂量子机械势能面的效率。与先前描述的不采用对称性的随机方法相反,候选结构是在简单点组(例如C-2,C-s和C-2v)内生成的。这有助于对3N-6 Pople的尺寸配置空间进行有效采样,并提高了量子化学几何优化的速度和有效性。 Pople的框架组概念[J.上午。化学Soc。 102,4615(1980)]用于将构型空间划分为跨越对称等效原子集的所有可能分布的结构。这提供了以最小的冗余度计算给定对称性的所有结构的有效方法。这种方法对于通过遗传算法和其他随机全局搜索技术生成用于全局优化的初始结构也是有利的。通过在Li5H2的cc-pwCVDZ ROCCSD(T)势能面上定位14个低洼的固定点来说明SASS方法的应用。确定了整体最小结构,以及许多独特的,非直觉的,在能量上有利的异构体。

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