Measurements of the Rovibrationally Dependent Lifetimes of C2 in the 13Σg+ and f3Σg- States through the VUV-Pump-UV-Probe Scheme.

IF 2.7 2区 化学 Q3 CHEMISTRY, PHYSICAL The Journal of Physical Chemistry A Pub Date : 2024-11-21 DOI:10.1021/acs.jpca.4c06785
Liying Ma, Di Li, Pan Jiang, Min Cheng, Hong Gao
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Abstract

The dicarbon molecule, C2, is one of the most important diatomic species in various gaseous environments. Despite extensive spectroscopic studies in the last two centuries, the radiative and photodissociative properties of C2 in its highly excited electronic states are still largely unexplored, particularly in the short vacuum ultraviolet (VUV) region. In this study, the lifetimes of C2 for rotational levels in the recently identified 13Σg+ state up to the vibrational level ν' = 4 and in the f3Σg- state up to ν' = 2 are measured for the first time with a VUV-pump-UV-probe photoionization scheme. It is found that all rovibrational levels in the f3Σg- state have lifetimes shorter than the dynamical limit of ∼4.7 ns of the present method, and the lifetimes in the 13Σg+ state show obvious and complex dependence on the rotational and vibrational quantum levels. Generally, the lifetime in the 13Σg+ state becomes shorter at higher rotational and vibrational levels, i.e., the longest lifetime measured in the ν' = 0 level is ∼18 ns, while all rotational levels in the ν' = 4 level are found to have shorter lifetimes than ∼4.7 ns. This implies that predissociation might occur and become more prominent at the higher energy levels in the 13Σg+ state. The prominent dependence of the lifetime on the rotational, vibrational and electronic level indicates complex dynamical processes in the highly excited states of C2.

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通过紫外-泵-紫外-探针方案测量 13Σg+ 和 f3Σg- 态中 C2 的振动相关寿命。
二碳分子 C2 是各种气态环境中最重要的二原子物种之一。尽管在过去的两个世纪中进行了大量的光谱研究,但 C2 在其高度激发的电子态中的辐射和光解离特性在很大程度上仍未得到探索,尤其是在短真空紫外(VUV)区域。在本研究中,首次采用 VUV-泵-紫外探针光离子化方案测量了 C2 在最近确定的 13Σg+ 态至振动水平 ν' = 4 和 f3Σg- 态至 ν' = 2 的旋转水平的寿命。研究发现,f3Σg-态的所有旋转振动水平的寿命都短于本方法的动力学极限 ∼ 4.7 ns,而 13Σg+ 态的寿命与旋转和振动量子水平有明显而复杂的依赖关系。一般来说,旋转和振动水平越高,13Σg+态的寿命越短,即在ν' = 0水平测得的最长寿命为∼18 ns,而在ν' = 4水平的所有旋转水平的寿命都短于∼4.7 ns。这意味着在 13Σg+ 态的高能级上可能会发生预解离,而且会变得更加突出。寿命对旋转、振动和电子水平的显著依赖性表明 C2 的高激发态具有复杂的动力学过程。
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来源期刊
The Journal of Physical Chemistry A
The Journal of Physical Chemistry A 化学-物理:原子、分子和化学物理
CiteScore
5.20
自引率
10.30%
发文量
922
审稿时长
1.3 months
期刊介绍: The Journal of Physical Chemistry A is devoted to reporting new and original experimental and theoretical basic research of interest to physical chemists, biophysical chemists, and chemical physicists.
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