Close-packing transitions in clusters of Lennard-Jones spheres

F. Calvo, M. Benali, V. Gerbaud, M. Hemati
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引用次数: 4

Abstract

The structures of clusters of spherical and homogeneous particles are investigated using a combination of global optimization methods. The pair wise potential between particles is integrated exactly from elementary Lennard-Jones interactions, and the use of reduced units allows us to get insight into the effects of the particle diameter. As the diameter increases, the potential becomes very sharp, and the cluster structure generally changes from icosahedral (small radius) to close-packed cubic (large radius), possibly through intermediate decahedral shapes. The results are interpreted in terms of the effective range of the potential.
Lennard-Jones球团簇中的密包跃迁
结合全局优化方法研究了球形和均匀颗粒团簇的结构。粒子间的对势精确地从基本的Lennard-Jones相互作用中得到积分,并且使用简化的单位使我们能够深入了解粒子直径的影响。随着直径的增大,电位变得非常尖锐,团簇结构一般由二十面体(小半径)转变为密实立方体(大半径),可能通过中间的十面体形状。结果用电位的有效范围来解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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