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基于从头算分子动力学对处于电子激发态的小氦团簇解离的模拟。

Simulations of the dissociation of small helium clusters with ab initio molecular dynamics in electronically excited states.

作者信息

Closser Kristina D, Gessner Oliver, Head-Gordon Martin

机构信息

Department of Chemistry, University of California Berkeley, Berkeley, California 94720, USA.

Ultrafast X-Ray Science Laboratory, Chemical Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA.

出版信息

J Chem Phys. 2014 Apr 7;140(13):134306. doi: 10.1063/1.4869193.

Abstract

The dynamics resulting from electronic excitations of helium clusters were explored using ab initio molecular dynamics. The simulations were performed with configuration interaction singles and adiabatic classical dynamics coupled to a state-following algorithm. 100 different configurations of He7 were excited into the 2s and 2p manifold for a total of 2800 trajectories. While the most common outcome (90%) was complete fragmentation to 6 ground state atoms and 1 excited state atom, 3% of trajectories yielded bound, He2(*), and <0.5% yielded an excited helium trimer. The nature of the dynamics, kinetic energy release, and connections to experiments are discussed.

摘要

利用从头算分子动力学方法研究了氦团簇电子激发产生的动力学过程。模拟采用组态相互作用单重态和绝热经典动力学,并结合态跟踪算法进行。将100种不同构型的He7激发到2s和2p多重态,共产生2800条轨迹。虽然最常见的结果(90%)是完全碎裂成6个基态原子和1个激发态原子,但3%的轨迹产生了束缚态的He2(*),且小于0.5%的轨迹产生了激发态的氦三聚体。文中讨论了动力学的性质、动能释放以及与实验的联系。

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