首页> 外文期刊>The Journal of Chemical Physics >Valence and inner-valence shell dissociative photoionization of CO in the 26-33 eV range. II. Molecular-frame and recoil-frame photoelectron angular distributions
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Valence and inner-valence shell dissociative photoionization of CO in the 26-33 eV range. II. Molecular-frame and recoil-frame photoelectron angular distributions

机译:在26-33 eV范围内,CO的价和内价壳离解性光电离。二。分子框架和反冲框架光电子角分布

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Experimental and theoretical results for molecular-frame photoemission are presented for inner-valence shell photoionization of the CO molecule induced by linearly and circularly polarized light. The experimental recoil frame photoelectron angular distributions (RFPADs) obtained from dissociative photoionization measurements where the velocities of the ionic fragment and photoelectron were detected in coincidence, are compared to RFPADs computed using the multichannel Schwinger configuration interaction method. The formalism for including a finite lifetime of the predissociative ion state is presented for the case of general elliptically polarized light, to obtain the RFPAD rather than the molecular frame photoelectron angular distribution (MFPAD), which would be obtained with the assumption of instantaneous dissociation. We have considered photoionization of CO for the photon energies of 26.0 eV, 29.5 eV, and 32.5 eV. A comparison of experimental and theoretical RFPADs allows us to identify the ionic states detected in the experimental studies. In addition to previously identified states, we found evidence for the 2 ~2 state with an ionization potential of 25.3 eV and ~2∑ ~+ states with ionization potentials near 32.5 eV. A comparison of the experimental and theoretical RFPADs permits us to estimate predissociative lifetimes of 0.25-1 ps for some of the ion states. Consideration of the MFPADs of a series of ~2 ion states indicates the importance of inter-channel coupling at low photoelectron kinetic energy and the limitations of a single-channel analysis based on the corresponding Dyson orbitals.
机译:提出了分子框架光发射的实验和理论结果,用于线性和圆偏振光诱导的CO分子的内价壳光电离。从解离光电离测量中获得的实验反冲框架光电子角分布(RFPAD)与使用多通道Schwinger构型相互作用方法计算出的RFPAD进行了比较,其中离子碎片和光电子的速度同时被检测到。对于一般的椭圆偏振光,提出了包括预解离离子态有限寿命的形式,以获得RFPAD而不是分子框架光电子角分布(MFPAD),后者是在瞬时解离的假设下获得的。我们已经考虑了26.0 eV,29.5 eV和32.5 eV的光子能量对CO进行光电离。实验和理论RFPAD的比较使我们能够识别在实验研究中检测到的离子态。除了先前确定的状态外,我们还发现了电离势为25.3 eV的2〜2状态和电离势接近32.5 eV的〜2∑〜+状态的证据。实验和理论RFPAD的比较使我们可以估计某些离子态的离解寿命为0.25-1 ps。对一系列〜2离子态的MFPAD的考虑表明,在低光电子动能的情况下通道间耦合的重要性以及基于相应戴森轨道的单通道分析的局限性。

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