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Evolution of the potential energy surface with size for Lennard-Jones clusters

机译:Lennard-Jones团簇的势能面随大小的演化

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Disconnectivity graphs are used to characterize the potential energy surfaces of Lennard-Jones clusters containing 13, 19, 31, 38, 55, and 75 atoms. This set includes members which exhibit either one or two "funnels" whose low-energy regions may be dominated by a single deep minimum or contain a number of competing structures. The graphs evolve in size due to these specific size effects and an exponential increase in the number of local minima with the number of atoms. To combat the vast number of minima we investigate the use of monotonic sequence basins as the fundamental topographical unit. Finally, we examine disconnectivity graphs for a transformed energy landscape to explain why the transformation provides a useful approach to the global optimization problem.
机译:断开连接图用于表征包含13、19、31、38、55和75个原子的Lennard-Jones簇的势能面。该组包括具有一个或两个“漏斗”的成员,这些漏斗的低能量区域可能由一个深度最小值主导,或者包含许多竞争结构。由于这些特定的尺寸效应以及局部极小值的数量随原子数量的增加而呈指数增长,因此图形的尺寸也在不断发展。为了对抗大量的极小值,我们研究了使用单调序列盆地作为基本地形单位的情况。最后,我们检查了转换后的能源格局的非连通性图,以解释为何转换为全局优化问题提供了一种有用的方法。

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