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Electronic-state interference in the C 1s excitation and decay of methyl chloride studied by angularly resolved Auger spectroscopy

机译:通过角度分辨的螺旋钻光谱研究C 1S激发和氯化甲基氯化物的电子状态干扰

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摘要

Resonant Auger (RA) decay spectra of carbon 1s excited CH_3Cl molecules are recorded with angular resolution using linearly polarized synchrotron radiation. The selected photon energies corresponding to the C 1s → 8a1 core to lowest unoccupied molecular orbital and C 1s → 4sa_1, 4pe, and 4pa_1 core to Rydberg excitations of methyl chloride are used and electrons in the binding energy range of 11–37 eV are detected. The vibrationally unresolved RA electron angular distributions, recorded for participator Auger transitions populating the X, A, B, and C states of the CH_3Cl~+ ion, exhibit strong variations across the selected electronic resonances. These observations are interpreted with the help of ab initio electronic structure and dynamics calculations, which account for electronic-state interference between the direct and different resonant ionization pathways. For spectator transitions, the theory predicts almost isotropic angular distributions with moderate changes of β parameters around zero, which is in agreement with the experimental observations.
机译:使用线性偏振的同步辐射辐射,用角度分辨率记录碳1S激发CH_3CL分子的谐振螺旋钻(RA)衰变光谱。使用与C 1S→8A1核对最低的未占用分子轨道和C 1S→4SA_1,4PE和4PA_1,4PA_1核和4PA_1核的所选光子能量在甲基氯的Rydberg激发中使用,并且检测到11-37eV的结合能量范围内的电子。记录用于填充CH_3CL〜+离子的X,A,B和C状态的参与者螺旋转换的振动未解决的RA电子分布,在所选择的电子谐振中表现出强烈的变化。在AB Initio电子结构和动力学计算的帮助下解释了这些观察,这考虑了直接和不同的谐振电离途径之间的电子状态干扰。对于观众过渡,该理论预测了几乎各向同性的角度分布,其β参数的中等变化零点,这与实验观察一致。

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