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Rotational state-dependent attachment of He atoms to cold molecular ions: An action spectroscopic scheme for rotational spectroscopy

机译:HE原子对冷分子离子的旋转状态依赖性附着:旋转光谱的动作光谱方案

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摘要

We present a kinetics model description of a newly developed action spectroscopic method for rotational spectroscopy based on rotational state-dependent three-body attachment of He atoms to cold molecular ions stored in a cryogenic 22-pole ion trap. The model results from numerical simulations and an approximate analytical expression are compared to measurements of the J = 1-0 rotational transition of CD+, for which we obtain a refined transition frequency of 453.5218509(7) GHz. From the analysis of the spectroscopic data recorded at varying experimental conditions, e.g. over a wide range of He number densities and excitation powers, we deduce that the ternary rate coefficient in the first excited rotational state of CD+ is reduced to (55 +/- 5)% of the rotational ground state value. This decrease in the rate coefficient can be rationalized as an increase of the redissociation probability in the ternary collision process. A summary of rotational spectroscopy measurements of other molecular ions using the new method will be given, and its general applicability is discussed. (C) 2016 Elsevier Inc. All rights reserved.
机译:我们提出了一种基于旋转状态依赖性三体附着的旋转光谱法的动力学模型描述,其基于HE原子的旋转状态依赖性三体连接到储存在低温22极离子阱中的冷分子离子。与数值模拟的模型和近似分析表达的模型与CD +的旋转转变的测量进行了比较,我们获得了453.5218509(7)GHz的精炼过渡频率。从改变实验条件下记录的光谱数据的分析,例如,在广泛的HE数量密度和激励力范围内,我们推导出CD +的第一个激发旋转状态下的三元率系数减少到旋转地位值的(55 +/- 5)%。速率系数的这种降低可以作为三元碰撞过程中的重新分配概率的增加来合理化。将给出使用新方法的其他分子离子的旋转光谱测量综述,并讨论了其一般适用性。 (c)2016年Elsevier Inc.保留所有权利。

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