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首页> 外文期刊>The Journal of Chemical Physics >Expedite random structure searching using objects from Wyckoff positions
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Expedite random structure searching using objects from Wyckoff positions

机译:加快随机结构使用来自Wyckoff位置的对象进行搜索

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摘要

Random structure searching has been proved to be a powerful approach to search and find the global minimum and the metastable structures. A true random sampling is in principle needed yet it would be highly time-consuming and/or practically impossible to find the global minimum for the complicated systems in their high-dimensional configuration space. Thus the implementations of reasonable constraints, such as adopting system symmetries to reduce the independent dimension in structural space and/or imposing chemical information to reach and relax into low-energy regions, are the most essential issues in the approach. In this paper, we propose the concept of "object" which is either an atom or composed of a set of atoms (such as molecules or carbonates) carrying a symmetry defined by one of the Wyckoff positions of space group and through this process it allows the searching of global minimum for a complicated system to be confined in a greatly reduced structural space and becomes accessible in practice. We examined several representative materials, including Cd3As2 crystal, solid methanol, high-pressure carbonates (FeCO3), and Si(111)-7 x 7 reconstructed surface, to demonstrate the power and the advantages of using "object" concept in random structure searching. Published by AIP Publishing.
机译:随机结构搜索已被证明是搜索和查找全局最小值和亚稳结构的强大方法。真正的随机抽样原则上是必需的,但它会在其高维配置空间中找到复杂系统的全局最小值是非常耗时的和/或实际上不可能。因此,合理约束的实现,例如采用系统对称以减少结构空间中的独立尺寸和/或施加化学信息以达到和放松到低能量区域中,是方法中最重要的问题。在本文中,我们提出了一种“物体”的概念,其是由携带由空间组的Wyckoff位置之一定义的对称性的一组原子(如分子或碳酸盐)组成的原子或由其允许的过程在大大减少的结构空间中搜索全局最小值,以极大地减少,并且可以在实践中获得。我们检查了几种代表性材料,包括CD3AS2晶体,固体甲醇,高压碳酸盐(FECO3)和Si(111)-7 x 7重建表面,以展示在随机结构搜索中使用“物体”概念的功率和优点。 。通过AIP发布发布。

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