English

Orbital breathing effects in the computation of x-ray d-ion spectra in solids by ab initio wave-function-based methods

Strongly Correlated Electrons 2020-01-29 v1

Abstract

In existing theoretical approaches to core-level excitations of transition-metal ions in solids relaxation and polarization effects due to the inner core hole are often ignored or described phenomenologically. Here we set up an ab initio computational scheme that explicitly accounts for such physics in the calculation of x-ray absorption and resonant inelastic x-ray scattering spectra. Good agreement is found with experimental transition-metal LL-edge data for the strongly correlated d9d^9 cuprate Li2_2CuO2_2, for which we determine the absolute scattering intensities. The newly developed methodology opens the way for the investigation of even more complex dnd^n electronic structures of group VI B to VIII B correlated oxide compounds.

Keywords

Cite

@article{arxiv.1611.03693,
  title  = {Orbital breathing effects in the computation of x-ray d-ion spectra in solids by ab initio wave-function-based methods},
  author = {Nikolay A. Bogdanov and Valentina Bisogni and Roberto Kraus and Claude Monney and Kejin Zhou and Thorsten Schmitt and Jochen Geck and Alexander O. Mitrushchenkov and Hermann Stoll and Jeroen van den Brink and Liviu Hozoi},
  journal= {arXiv preprint arXiv:1611.03693},
  year   = {2020}
}