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Bands, resonances, edge singularities and excitons in core level spectroscopy investigated within the dynamical mean-field theory

机译:动力学平均场理论研究的核心能级谱中的带,共振,边缘奇异性和激子

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Using a recently developed impurity solver we exemplify how dynamical mean-field theory captures band excitations, resonances, edge singularities and excitons in core level x-ray absorption spectroscopy (XAS) and core level photo electron spectroscopy (cPES) on metals, correlated metals and Mott insulators. Comparing XAS at different values of the core-valence interaction shows how the quasiparticle peak in the absence of core-valence interactions evolves into a resonance of similar shape, but different origin. Whereas XAS is rather insensitive to the metal insulator transition, cPES can be used, due to nonlocal screening, to measure the amount of local charge fluctuation. Copyright (C) EPLA, 2014
机译:使用最新开发的杂质求解器,我们可以举例说明动力学平均场理论如何在金属,相关金属和金属的核心能级X射线吸收光谱(XAS)和核心能级光电子光谱(cPES)中捕获带激发,共振,边缘奇异性和激子。莫特绝缘子。在不同的核心价相互作用值处比较XAS表明,在没有核心价相互作用的情况下,准粒子峰如何演变为形状相似但起源不同的共振。 XAS对金属绝缘体的转变相当不敏感,但由于非局部屏蔽,因此可以使用cPES来测量局部电荷波动的量。版权(C)EPLA,2014年

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