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Predissociation and autoionization of triplet Rydberg states in molecular hydrogen

机译:三重态里德堡态在分子氢中的预离解和自电离

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摘要

We present single-photon spectroscopy in molecular hydrogen starting from the metastable c(3)Pi(u)(-) state to a number of triplet nd-Rydberg states (v=0-4, n=12-20). Using fast beam spectroscopy both the autoionization channel and the predissociation channel are quantified, field free, as well as with small electric fields. Coupling with the i(3)Pi(g) state is assumed to be responsible for field-free predissociation of the v=0 Rydberg levels. The stronger observed predissociation channel of the v=1 Rydberg levels is due to the nonadiabatic interaction with the h(3)Sigma(g)(+) state in combination with l mixing due to an external electric field. No direct evidence is found for possible electric field induced predissociation of the gerade Rydberg states by low lying ungerade states. The competition between autoionization and predissociation is discussed in terms of possible consequences for dissociative recombination involving low energy electron collisions with the H-2(+) molecular ion. (C) 2004 American Institute of Physics.
机译:我们目前在分子氢中从亚稳态c(3)Pi(u)(-)状态到三重态nd-Rydberg状态(v = 0-4,n = 12-20)的单光子光谱。使用快速束光谱法,可以对自动电离通道和预离解通道进行定量,无电场以及具有小的电场。假定与i(3)Pi(g)的耦合是v = 0里德伯格能级的无场预离解的原因。 v = 1 Rydberg水平观察到的更强的预解离通道是由于与h(3)Sigma(g)(+)状态的非绝热相互作用以及由于外部电场引起的l混合。没有直接的证据表明低电场的未插枝状态可能导致电场诱导的插枝Rydberg州发生预离解。根据涉及低能电子与H-2(+)分子离子碰撞的离解重组的可能后果,讨论了自电离与预离解之间的竞争。 (C)2004美国物理研究所。

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