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Splitting of core-level lines in photoemission spectra of transition metal compounds

机译:过渡金属化合物光发射光谱中核心能级线的分裂

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摘要

The multiplet structure of core-electron binding energies in Cr 3s, Cr 3p and Cr 2p levels of CrCl3 and CrBr3 compounds has been investigated by X-ray photoelectron spectroscopy. The Cr 3s levels show a doublet splitting ( about 4.3 eV) for the main emission in both halides. Satellites features are observed in Cr 3s, 3p and 2p levels at higher binding energies. In the Cr 3s spectrum, the main emission is assigned to unscreened intra-atomic multiplet splittings with correlation-induced satellites. The Cr 3p and 2p spectra can be better explained by the multiplet splitting arising from the interaction between valence band 3d electrons and core p holes in the crystal field. Final state screening (charge-transfer) effects do not play a major role in Cr 3s main emission nor do they affect the satellite structures in a relevant way. This explains why the Cr 3s exchange splitting in chromium halides is proportional to the local magnetic moment.
机译:通过X射线光电子能谱研究了CrCl3和CrBr3化合物在Cr 3s,Cr 3p和Cr 2p含量水平下核电子结合能的多重结构。 Cr 3s的含量在两种卤化物中均显示出主要发射峰的双峰分裂(约4.3 eV)。在较高的结合能下,可在Cr 3s,3p和2p水平观察到卫星特征。在Cr 3s光谱中,主要发射被分配给相关感应卫星进行的未筛选的原子内多重分裂。 Cr 3p和2p光谱可以通过价带3d电子与晶体场中p芯空穴相互作用产生的多重分裂来更好地解释。最终状态筛选(电荷转移)效应在Cr 3s的主要排放中不发挥主要作用,也不以相关方式影响卫星结构。这解释了为什么在卤化铬中Cr 3s交换分裂与局部磁矩成正比。

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