Doye JP
University Chemical Laboratory, Lensfield Road, Cambridge CB2 1EW, United Kingdom.
Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics. 2000 Dec;62(6 Pt B):8753-61. doi: 10.1103/physreve.62.8753.
Recently, Locatelli and Schoen proposed a transformation of the potential energy that aids the global optimization of Lennard-Jones clusters with nonicosahedral global minima. These cases are particularly difficult to optimize because the potential energy surface has a double funnel topography with the global minimum at the bottom of the narrower funnel. Here we analyze the effect of this type of transformation on the topography of the potential energy surface. The transformation, which physically corresponds to a compression of the cluster, first reduces the number of stationary points on the potential energy surface. Secondly, we show that for a 38-atom cluster with a face-centered-cubic global minimum the transformation causes the potential energy surface to become increasingly dominated by the funnel associated with the global minimum. The transformation has been incorporated in the basin-hopping algorithm using a two-phase approach.
最近,洛卡特利和舍恩提出了一种势能变换方法,该方法有助于对具有非二十面体全局最小值的 Lennard-Jones 团簇进行全局优化。这些情况特别难以优化,因为势能面具有双漏斗地形,全局最小值位于较窄漏斗的底部。在这里,我们分析了这种类型的变换对势能面地形的影响。这种变换在物理上相当于团簇的压缩,首先减少了势能面上驻点的数量。其次,我们表明,对于具有面心立方全局最小值的 38 原子团簇,这种变换会使势能面越来越多地由与全局最小值相关的漏斗所主导。该变换已通过一种两阶段方法被纳入盆地跳跃算法中。