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Zero kinetic energy-pulsed field ionization and resonance enhanced multiphoton ionization photoelectron spectroscopy: Ionization dynamics of Rydberg states in HBr

机译:零动能脉冲场电离和共振增强多光子电离光电子能谱:HBr中里德堡态的电离动力学

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摘要

The results of rotationally resolved resonance enhanced multiphoton ionization photoelectron spectroscopy and zero kinetic energy‐pulsed field ionization studies on HBr via various rotational levels of the F^ 1Δ_2 and f^ 3Δ_2 Rydberg states are reported. These studies lead to an accurate determination of the lowest ionization threshold as 94 098.9±1 cm^(−1). Observed rotational and spin–orbit branching ratios are compared to the results of ab initio calculations. The differences between theory and experiment highlight the dominant role of rotational and spin–orbit interactions for the dynamic properties of the high‐n Rydberg states involved in the pulsed field ionization process.
机译:报道了通过各种旋转水平的F ^1Δ_2和f ^3Δ_2Rydberg态对HBr进行旋转分辨共振增强多光子电离光电子能谱和零动能脉冲场电离研究的结果。这些研究导致最低电离阈值的准确确定为94 098.9±1 cm ^(-1)。将观察到的旋转和自旋轨道分支比与从头算计算的结果进行比较。理论与实验之间的差异突显了旋转和自旋-轨道相互作用对于参与脉冲场电离过程的高n Rydberg态的动力学性质的主导作用。

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