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首页> 外文期刊>The Journal of Chemical Physics >Two-photon dissociation of the NO dimer in the region 7.1-8.2 eV: Excited states and photodissociation pathways
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Two-photon dissociation of the NO dimer in the region 7.1-8.2 eV: Excited states and photodissociation pathways

机译:区域7.1-8.2 eV中NO二聚体的双光子解离:激发态和光解离途径

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摘要

A study of excited states of the NO dimer is carried out at 7.1-8.2 eV excitation energies. Photoexcitation is achieved by two-photon absorption at 300-345 nm followed by (NO)(2) dissociation and detection of electronically excited products, mostly in n=3 Rydberg states of NO. Photoelectron imaging is used as a tool to identify product electronic states by using non-state-selective ionization. Photofragment ion imaging is used to characterize product translational energy and angular distributions. Evidence for production of NO(A (2)Sigma(+)), NO(C (2)Pi), and NO(D (2)Sigma(+)) Rydberg states of NO, as well as the valence NO(B (2)Pi) state, is obtained. On the basis of product translational energy and angular distributions, it is possible to characterize the excited state(s) accessed in this region, which must possess a significant Rydberg character. (C) 2004 American Institute of Physics.
机译:在7.1-8.2 eV激发能下对NO二聚体的激发态进行了研究。光激发是通过在300-345 nm处吸收两个光子,然后进行(NO)(2)分解和检测电子激发产物而实现的,大部分处于n = 3的Rydberg状态。光电子成像被用作通过使用非状态选择性电离来识别产品电子状态的工具。光碎裂离子成像用于表征产物平移能和角度分布。产生NO(A(2)Sigma(+)),NO(C(2)Pi)和NO(D(2)Sigma(+))Rydberg状态以及价态NO(B)的证据获得(2)Pi)状态。基于产物平移能和角分布,可以表征在该区域中必须具有显着的里德堡特性的激发态。 (C)2004年美国物理研究所。

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