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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >On the use of big-bang method to generate low-energy structures of atomic clusters modeled with pair potentials of different ranges
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On the use of big-bang method to generate low-energy structures of atomic clusters modeled with pair potentials of different ranges

机译:关于使用大爆炸法生成具有不同范围对势的原子团簇的低能结构

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摘要

The efficiency of the so-called big-bang method for the optimization of atomic clusters is analysed in detail for Morse pair potentials with different ranges; here, we have used Morse potentials with four different ranges, from long- χ = 3) to short-ranged χ = 14) interactions. Specifically, we study the efficacy of the method in discovering low-energy structures, including the putative global minimum, as a function of the potential range and the cluster size. A new global minimum structure for long-ranged χ = 3) Morse potential at the cluster size of n= 240 is reported. The present results are useful to assess the maximum cluster size for each type of interaction where the global minimum can be discovered with a limited number of big-bang trials.
机译:对于不同范围的莫尔斯对势,详细分析了所谓的“大爆炸”方法对原子团簇的优化效率。在这里,我们使用了四个不同范围的莫尔斯电势,从长χ= 3)到短程χ= 14)相互作用。具体而言,我们研究了该方法在发现低能结构(包括推定的全局最小值)方面的功效,该结构是潜在范围和簇大小的函数。报道了一种新的全局最小结构,适用于长距离χ= 3)簇大小为n = 240的莫尔斯电势。目前的结果对于评估每种类型的相互作用的最大簇大小很有用,其中可以通过有限数量的大爆炸试验发现全局最小值。

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