Combined first principles and many-body theory modelling of x-ray absorption spectra of bulk MgO and SrTiO<sub>3</sub>
POSTER
Abstract
We present a comprehensive study of the x-ray absorption spectra (XAS) in two paradigmatic oxides − MgO and SrTiO3, from first-principles calculations. The spectra are calculated by including the quasiparticle corrections with G0W0 (MgO) / within the independent particle approximation (SrTiO3), followed by the excitonic effects by solving the Bethe-Salpeter Equation (BSE). Our results show that inclusion of the electron – core hole interaction with BSE is integral to describe the spectra accurately. The simulated XAS spectra for the O and Mg K-edge (MgO) [1], and O K-edge (SrTiO3) [2] are in excellent agreement with experiment w.r.t. the spectral shape and peak positions. The theoretical Ti-L2,3 edge is concurrent with experiment w.r.t. the energetic positions of the four-peak structure stemming from the crystal-field splitting due to the Ti octahedral coordination in SrTiO3. We also analyze the origin of prominent peaks and identify the orbital character of the relevant contributions by projecting the e-h coupling coefficients from the BSE eigenvectors on the band structure. The real-space projection of the wave functions for the lowest energy exciton of the O K-edge shows a strong localization (MgO), whereas a two-dimensional spread in the x-y plane is observed for SrTiO3.
Publication: [1] V. Begum, M. E. Gruner, C. Vorwerk, C. Draxl, and R. Pentcheva, Physical Review B 103, 195128 (2021).<br>[2] V. Begum-Hudde, M. E. Gruner, T. Lojewski, N. Rothenbach, B. Eggert, A. Eschenlohr, K. Ollefs, and R. Pentcheva, Phys. Rev. Res., under review.
Presenters
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Vijaya Begum-Hudde
University of Illinois at Urbana-Champaign
Authors
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Vijaya Begum-Hudde
University of Illinois at Urbana-Champaign
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Christian W Vorwerk
University of Chicago
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Tobias Lojewski
University of Duisburg-Essen
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Andrea Eschenlohr
University of Duisburg-Essen
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Katharina Ollefs
University of Duisburg-Essen
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Claudia Draxl
Humboldt University of Berlin
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Markus E Gruner
University of Duisburg-Essen
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Rossitza Pentcheva
University of Duisburg-Essen