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Understanding the 2p core-level spectra of manganese: Photoelectron spectroscopy experiments and Anderson impurity model calculations

机译:了解锰的2p核能级光谱:光电子能谱实验和安德森杂质模型计算

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摘要

Using high-resolution core-level photoelectron spectroscopy and modified Anderson impurity model calculations, we study the Mn 2p spectrum of manganese metal and resolve the current debate about its spectral shape. An unusual satellite feature, 1 eV from the main peak, is observed in the Mn 2p_(3/2) spectrum of a thick Mn layer grown on Al. It originates from intra-atomic multiplet effect related to Mn atoms with large local moment. The satellite decreases in intensity for thin Mn layers and for Al deposition on bulklike Mn because of enhanced Mn 3d hybridization with Al s,p bandlike states. The reason for the absence of a charge-transfer satellite is discussed.
机译:使用高分辨率核能级光电子能谱和改进的安德森杂质模型计算,我们研究了锰金属的Mn 2p光谱,并解决了有关其光谱形状的当前争论。在Al上生长的厚Mn层的Mn 2p_(3/2)光谱中观察到一个异常的卫星特征,距主峰1 eV。它源自与具有大局部矩的Mn原子相关的原子内多重峰效应。由于增强的Mn 3d与Al s,p带状态的杂化作用,人造卫星的Mn薄层厚度和Al在块状Mn上的沉积强度降低。讨论了缺少电荷转移卫星的原因。

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