Ab initio theory of dynamical core-hole screening in graphite from x-ray absorption spectra

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Abstract

We have implemented the effect of dynamical core-hole screening, as given by Mahan, Nozières, and De Dominicis, in a first-principles based method and applied the theory to the x-ray absorption (XA) spectrum of graphite. It turns out that two of the conspicuous peaks of graphite are well described, both regarding the position, shape, and relative intensity, whereas one peak is absent in the theory. Only by incorporation of both excitonic and delocalized processes can a full account of the experimental spectrum be obtained theoretically, and we interpret the XA spectrum in graphite to be the result of a well screened and a poor screened process, much in the same way as is done for core level x-ray photoelectron spectroscopy. © 2005 The American Physical Society.

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Wessely, O., Katsnelson, M. I., & Eriksson, O. (2005). Ab initio theory of dynamical core-hole screening in graphite from x-ray absorption spectra. Physical Review Letters, 94(16). https://doi.org/10.1103/PhysRevLett.94.167401

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