English

Atomic signatures of local environment from core-level spectroscopy in $\beta$-Ga$_2$O$_3$

Materials Science 2016-08-31 v2

Abstract

We present a joint theoretical and experimental study on core-level excitations from the oxygen KK edge of β\beta-Ga2_2O3_3. A detailed analysis of the electronic structure reveals the importance of O-Ga hybridization effects in the conduction region. The spectrum from O 1ss core electrons is dominated by excitonic effects, which overall redshift the absorption onset by 0.5 eV, and significantly redistribute the intensity to lower energies. Analysis of the spectra obtained within many-body perturbation theory reveals atomic fingerprints of the inequivalent O atoms. From the comparison of energy-loss near-edge fine-structure (ELNES) spectra computed with respect to different crystal planes, with measurements recorded under the corresponding diffraction conditions, we show how the spectral contributions of specific O atoms can be enhanced while quenching others. These results suggest ELNES, combined with ab initio many-body theory, as a very powerful technique to characterize complex systems, with sensitivity to individual atomic species and to their local environment.

Keywords

Cite

@article{arxiv.1605.05839,
  title  = {Atomic signatures of local environment from core-level spectroscopy in $\beta$-Ga$_2$O$_3$},
  author = {Caterina Cocchi and Hannes Zschiesche and Dmitrii Nabok and Anna Mogilatenko and Martin Albrecht and Zbigniew Galazka and Holm Kirmse and Claudia Draxl and Christoph Koch},
  journal= {arXiv preprint arXiv:1605.05839},
  year   = {2016}
}