首页> 外文期刊>The Journal of Chemical Physics >GLOBAL GEOMETRY OPTIMIZATION OF (AR)(N) AND B(AR)(N) CLUSTERS USING A MODIFIED GENETIC ALGORITHM
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GLOBAL GEOMETRY OPTIMIZATION OF (AR)(N) AND B(AR)(N) CLUSTERS USING A MODIFIED GENETIC ALGORITHM

机译:使用改进的遗传算法对(AR)(N)和B(AR)(N)团簇进行全局几何优化

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A modified deterministic/stochastic genetic algorithm (DS-GA) method is proposed for the determination of the global minimum of atomic clusters described by pairwise analytic interaction potentials. Our modification of the standard GA method involves a coarse local minimization of each member of the population at every generation, as well as including the gradient into the fitness function. For Lennard-Jones (Ar)(n) clusters with n<30, the DS-GA converges far more quickly to the global minimum than either conventional GA methods or random search procedures. An application of this DS-GA is made to heterogeneous clusters of B(P-2) with multiple Ar atoms. The interaction potential is given by the lowest state of a 3X3 electronic Hamiltonian. The Ar-Ar potential and the lower energy (IT state) B-Ar potential are very similar. In contrast, the higher energy (Sigma state) B-Ar interaction is essentially repulsive. Consequently, the B atom is nearly always found to substitute for one of the atoms in the corresponding (Ar)(n+1) cluster with the fewest number of nearest neighbors. (C) 1996 American Institute of Physics. [References: 46]
机译:提出了一种改进的确定性/随机遗传算法(DS-GA),用于确定由成对解析相互作用势描述的原子簇的整体最小值。我们对标准GA方法的修改涉及每一代人口中每个成员的粗略局部最小化,以及将梯度包括在适应度函数中。对于n <30的Lennard-Jones(Ar)(n)群集,与传统的GA方法或随机搜索程序相比,DS-GA收敛到全局最小值的速度要快得多。此DS-GA的应用是具有多个Ar原子的B(P-2)的异质簇。相互作用势由3X3电子哈密顿量的最低状态给出。 Ar-Ar电位和较低能量(IT状态)的B-Ar电位非常相似。相反,较高能量(西格玛状态)的B-Ar相互作用本质上是排斥的。因此,几乎总是发现B原子可以替代相应(Ar)(n + 1)簇中原子数最少的最近邻居。 (C)1996年美国物理研究所。 [参考:46]

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