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Multiplet-specific shape resonance and autoionization effects in (2+1) resonance enhanced multiphoton ionization of O_2 via the d ^1Π_g state

机译:(2 + 1)共振通过d ^1Π_g态增强O_2的多光子电离的多重特异性形状共振和自电离效应

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摘要

In this paper we discuss the single‐photon ionization dynamics of the d  ^1Π_g Rydberg state of O_2. Comparison is made with vibrationally resolved measurements of photoelectron spectra which employ (2+1) resonance enhanced multiphoton ionization (REMPI) through the d  ^1Π_g state. A σ_u shape resonance near the ionization threshold leads to non‐Franck–Condon vibrational branching ratios and a substantial dependence of photoelectron angular distributions on the vibrational state of the X  ^2Π_g ion. Significant differences exist between our one‐electron predictions and experiment. These are mainly attributed to electronic autoionization of repulsive ^1∑^−_u , ^1∑^+_u , and ^1Δ_u states associated with the 1π^3_u 1π^3_g configuration. A proposed singlet "K" ^1Π_u Rydberg state converging to the A  ^2Π_u ion probably also contributes to autoionization in the d  ^1Π_g state spectrum. We also show that autoionizing H and J  ^3Π_u Rydberg states of O_2 converging to the a  ^4Π_u and A  ^2Π_u ionic thresholds, respectively, may play a previously unsuspected role in the C  ^3Π_g state one‐color REMPI spectra. We discuss multiplet‐specific (spin‐dependent) effects via comparison of these results with recent experimental and theoretical studies of O_2 C  ^3Π_g photoionization.
机译:在本文中,我们讨论了O_2的d ^1Π_gRydberg态的单光子电离动力学。通过振动解析测量的电子光谱进行比较,该测量通过d ^1Π_g状态采用(2 + 1)共振增强多光子电离(REMPI)。接近电离阈值的σ_u形共振导致非弗朗克-康登振动分支比和光电子角分布对X ^2Π_g离子振动状态的依赖性。我们的单电子预测与实验之间存在显着差异。这些主要归因于与1π^ 3_u1π^ 3_g配置相关联的排斥性^ 1∑ ^ -_ u,^ 1∑ ^ + _ u和^1Δ_u状态的电子自电离。提出的单线态“ K” ^1Π_uRydberg态收敛到A ^2Π_u离子也可能有助于d ^1Π_g态谱的自电离。我们还表明,将O_2的H和J ^3Π_uRydberg状态自动电离分别收敛到a ^4Π_u和A ^2Π_u离子阈值,可能在C ^3Π_g状态单色REMPI光谱中发挥了之前未曾想到的作用。通过将这些结果与O_2 C ^3Π_g光电离的最新实验和理论研究进行比较,我们讨论了多重特定的(自旋依赖性)效应。

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