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Formation of the CH fragment in the 193 nm photodissociation of CHCl

机译:在CHCl的193 nm光解中CH片段的形成

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The CH fragment from the 193 nm photodissociation of CHCl is observed in a molecular beam experiment. This fragment is formed in the higher-energy dissociation pathway, the lower pathway involving formation of CCl. Both the CHCl parent molecule and the CH fragment were detected by laser-induced fluorescence. The 193 nm CHCl absorption cross section was estimated from the reduction of the CHCl signal as a function of the photolysis laser fluence. The CH internal state distribution was derived from the analysis of laser-induced fluorescence spectra of the A-X Delta v=0 sequence. A modest degree of rotational excitation was found in the CH fragment; the most probable rotational level is N=1, but the distribution has a tail extending to N>25. Also observed is a slight preference for formation of Lambda-doublets of A '' symmetry, which appears to increase with increasing rotational angular momentum N. Vibrationally excited CH was observed, and the degree of vibrational excitation was found to be low. The energy available to the photofragments is predominantly released as translational excitation. The preferential formation of A '' Lambda-doublets suggests that dissociation occurs through a nonlinear excited state. (C) 2008 American Institute of Physics.
机译:在分子束实验中观察到了CHCl在193 nm光解中的CH片段。该片段在较高能量的离解途径中形成,较低的途径涉及CCl的形成。通过激光诱导的荧光检测CHCl母体分子和CH片段。根据光解激光注量的变化,根据CHCl信号的减少来估算193 nm CHCl吸收截面。 CH内部状态分布来自A-X Delta v = 0序列的激光诱导荧光光谱分析。在CH片段中发现适度的旋转激发;最可能的旋转级别是N = 1,但分布的尾部延伸到N> 25。还观察到稍微倾向于形成A''对称的Lambda双峰,它似乎随着旋转角动量N的增加而增加。观察到振动激发的CH,并且发现振动激发的程度低。可用于光碎片的能量主要作为平移激发释放。 A''Lambda-doublets的优先形成表明解离是通过非线性激发态发生的。 (C)2008美国物理研究所。

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