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氦团簇的电子激发态的从头算研究。

Ab initio calculations on the electronically excited states of small helium clusters.

机构信息

Department of Chemistry, University of California at Berkeley, and Chemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.

出版信息

J Phys Chem A. 2010 Aug 12;114(31):8023-32. doi: 10.1021/jp103532q.

Abstract

The vertical excitation energies of small helium clusters, He(7) and He(25), have been calculated using configuration interaction singles, and the character of the excited states was determined using attachment/detachment density analysis. It was found that in the n = 2 manifold the excitations could be interpreted as superpositions of atomic states, with excitations on the surface of the clusters being lower in energy than those in the bulk. For the n = 2 excited states with significant density on the interior of the cluster, mixing with the atomic n = 3 states resulted in lower excitation energies. For the n = 3 states the spatial extent of the excited-state density can be much larger than the size of the cluster, making analysis of the states more difficult and highly dependent on the internuclear distance. Introducing disorder into the clusters results in some localization of the excited states, although highly delocalized states are always observed in these small clusters. In addition, experimental results for small clusters are interpreted in terms of these findings.

摘要

使用组态相互作用单激发方法计算了氦团簇 He(7)和 He(25)的垂直激发能,并通过附着/脱附密度分析确定了激发态的特征。结果表明,在 n = 2 简并态中,激发可以被解释为原子态的叠加,表面激发比体相激发的能量低。对于在团簇内部具有显著密度的 n = 2 激发态,与原子 n = 3 态的混合导致更低的激发能。对于 n = 3 态,激发态密度的空间范围可以远远大于团簇的大小,使得对这些态的分析更加困难,并且高度依赖于核间距离。在团簇中引入无序会导致一些激发态的局域化,尽管在这些小团簇中总是观察到高度离域的态。此外,还根据这些发现解释了小团簇的实验结果。

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