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首页> 外文期刊>Journal of Electron Spectroscopy and Related Phenomena >Effect of relaxation and decay of a charge transfer shakeup satellite on Auger-electron spectroscopy spectra and Auger-photoelectron coincidence spectroscopy spectra of adsorbates
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Effect of relaxation and decay of a charge transfer shakeup satellite on Auger-electron spectroscopy spectra and Auger-photoelectron coincidence spectroscopy spectra of adsorbates

机译:电荷转移震动卫星的弛豫和衰减对吸附物的俄歇电子能谱和俄歇光电子重合能谱的影响

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摘要

An electron excited to an unoccupied part of adsorbate-substrate hybrid states in a chemisorbed molecule by a resonant core electron excitation or charge transfer (CT) shakeup may delocalize on time scale of core-hole decay so that the excited core-hole state relaxes partly or completely to a fully relaxed one. The Auger decay of the fully relaxed core-hole state via the relaxation of the excited one introduces an additional feature in the resonant Auger-electron spectroscopy (RAES) spectrum and the AES spectrum. However, the additional feature in the RAES spectrum is a normal AES spectrum by decay of the fully relaxed core-hole state, whereas the one in the AES spectrum is the AES spectrum by decay of the fully relaxed core-hole state broadened by the photoelectron spectroscopy (PES) CT shakeup satellite weighted by the branching ratio of the relaxation width. The discrepancies between the AES spectrum measured at high above the ionization threshold and the additional feature in the RAES spectrum consist of the symmetric-like part by the decay of the fully relaxed core-hole state via the relaxation of the CT shakeup state and the asymmetric part by the direct decay of the shakeup states. The asymmetric part increases with a decrease in the hybridization strength. This explains the variation with the hybridization strength in the discrepancies between the RAES spectra and the AES spectra of chemisorbed molecules such as CO/Ni. CO/Cu and CO/Ag. A comparison of the singles PES spectrum with the one measured in coincidence with the AES main line of a selected kinetic energy (KE) provides the delocalization rate of the excited electron in the CT shakeup state as a function of photoelectron KE. The coincidence measurement to obtain the partial singles PES spectrum is discussed. (C) 2007 Elsevier B.V. All rights reserved.
机译:通过共振核心电子激发或电荷转移(CT)摇动被激发到化学吸附分子中吸附物-底物杂化状态的未占据部分的电子可能会在核孔衰变的时间尺度上离位,从而使被激发的核孔态部分松弛或完全放松。完全松弛的核孔态的俄歇衰变通过受激态的弛豫而引入,在共振俄歇电子能谱(RAES)光谱和AES光谱中引入了附加功能。然而,RAES光谱中的另一个特征是通过完全弛豫的芯孔态的衰减而产生的正常AES光谱,而AES光谱中的一个特征是由于通过光电子展宽的完全弛豫的芯孔态的衰减而产生的AES光谱光谱学(PES)CT摇动卫星由弛豫宽度的分支比加权。在高于电离阈值的高点处测量的AES光谱与RAES光谱中的其他特征之间的差异包括对称部分,即通过完全弛豫的核孔态通过CT振动态的弛豫而衰减的对称部分和非对称的部分。部分原因是重组状态的直接衰减。随着杂交强度的降低,不对称部分增加。这解释了化学吸附的分子(例如CO / Ni)的RAES光谱和AES光谱之间的差异,杂交强度的变化。 CO / Cu和CO / Ag。将单次PES光谱与与选定动能(KE)的AES主线同时测量的PES光谱进行比较,可以得出CT振荡状态下受激电子的离域速率与光电子KE的关系。讨论了获得部分单项PES频谱的一致性测量。 (C)2007 Elsevier B.V.保留所有权利。

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