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首页> 外文期刊>Journal of Electron Spectroscopy and Related Phenomena >Core-valence (KLV, KVV, LVV) Auger and high resolution valence band XPS spectra of aluminium: a comparison with the results of cluster MO calculations
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Core-valence (KLV, KVV, LVV) Auger and high resolution valence band XPS spectra of aluminium: a comparison with the results of cluster MO calculations

机译:铝的核心价(KLV,KVV,LVV)俄歇和高分辨率价带XPS光谱:与簇MO计算结果的比较

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摘要

Core-valence (KLV, KVV, LVV) Auger and valence band XPS spectra of aluminium have been measured by high resolution and high sensitivity electron spectrometers and interpreted by different theoretical models. For core-core-valence transitions both the Green function formalism, applied to account for the distortion of the local density of states due to the presence of the final state core hole, and the cluster MO (DVXα) calculation, using a cluster potential with a core hole, describe well the shape of the measured spectra. In the case of the Al KVV spectrum, a spectral width (FWHM) of 14.5 eV has been observed which is considerably smaller, than predicted by previous experiments. The shape of the core-valence-valence Auger spectra can be interpreted successfully using the ground state density of states obtained from the cluster MO model.
机译:铝的核价(KLV,KVV,LVV)俄歇和价带XPS光谱已通过高分辨率和高灵敏度电子光谱仪进行了测量,并通过不同的理论模型进行了解释。对于核心-核心价过渡,应用Green函数形式主义(用于解决由于存在最终状态核心孔而导致的局部局部密度畸变)和集群MO(DVXα)计算,使用具有一个核心孔,可以很好地描述所测光谱的形状。在Al KVV光谱的情况下,已观察到14.5 eV的光谱宽度(FWHM),比以前的实验预测的要小得多。可以使用从簇MO模型获得的状态的基态密度来成功解释核心价价俄歇谱的形状。

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