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Interpretation of the photoelectron spectra of superalkali species: Li _3O and Li_3O~(-a))

机译:Li_3O和Li_3O〜(-a)超碱物种的光电子能谱解释

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The present paper deals with the interpretation of the photoelectron spectrum of the Li_3O~-. After several failed attempts to attribute all of the observed peaks in the experimental spectrum to anionic species, neutral species were considered assuming a sequential two-photon absorption mechanism. We find that only two of the six observed peaks can be attributed to photodetachments and that all other observed features can be assigned to ionizations from the ground and excited states of the neutral. Nuclear distributions other than three lithium atoms surrounding the oxygen are not likely to be stable. The interpretation of the experimental peak located at about 1.2 eV remains challenging. It can either be attributed to the second electron detachment (involving the HOMO -1 orbital) energy from the anions triplet C_(2v) state or to higher excited states (involving HOMO + 10, 11, 12 ? orbitals) of the neutral species. Furthermore, we have examined the influence of vibrational displacements on the location of the observed peaks. We find that this effect is smaller than 0.05 eV and, therefore, must be considered as negligible.
机译:本文探讨了Li_3O〜-的光电子能谱。经过几次失败的尝试,将实验光谱中所有观察到的峰归因于阴离子物种,然后假设中性物种假设了连续的两个光子吸收机制。我们发现六个观察到的峰中只有两个可以归因于光解离,而所有其他观察到的特征都可以归因于来自基态和中性态的电离。除了围绕氧的三个锂原子以外的核分布不太可能是稳定的。对位于约1.2 eV的实验峰的解释仍然具有挑战性。它可以归因于中性物种从阴离子三重态C_(2v)状态发生的第二电子脱离(涉及HOMO -1轨道)能或较高的激发态(涉及HOMO + 10、11、12α轨道)。此外,我们已经检查了振动位移对观测峰位置的影响。我们发现该效应小于0.05 eV,因此必须认为可以忽略不计。

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