English

Local electronic structure of rutile RuO$_2$

Strongly Correlated Electrons 2021-08-16 v1 Materials Science Other Condensed Matter Superconductivity

Abstract

Recently, rutile RuO2_2 has raised interest for its itinerant antiferromagnetism, crystal Hall effect, and strain-induced superconductivity. Understanding and manipulating these properties demands resolving the electronic structure and the relative roles of the rutile crystal field and 4d4d spin-orbit coupling (SOC). Here, we use O-K and Ru M3M_3 x-ray absorption (XAS) and Ru M3M_3 resonant inelastic x-ray scattering (RIXS) to disentangle the contributions of crystal field, SOC, and electronic correlations in RuO2_2. The locally orthorhombic site symmetry of the Ru ions introduces significant crystal field contributions beyond the approximate octahedral coordination yielding a crystal field energy scale of Δ(t2g)1\Delta(t_{2g})\approx 1 eV breaking the degeneracy of the t2gt_{2g} orbitals. This splitting exceeds the Ru SOC (160\approx160 meV) suggesting a more subtle role of SOC, primarily through the modification of itinerant (rather than local) 4d4d electronic states, ultimately highlighting the importance of the local symmetry in RuO2_2. Remarkably, our analysis can be extended to other members of the rutile family, thus advancing the comprehension of the interplay among crystal field symmetry, electron correlations, and SOC in transition metal compounds with the rutile structure.

Keywords

Cite

@article{arxiv.2108.06256,
  title  = {Local electronic structure of rutile RuO$_2$},
  author = {Connor A. Occhialini and Valentina Bisogni and Hoydoo You and Andi Barbour and Ignace Jarrige and J. F. Mitchell and Riccardo Comin and Jonathan Pelliciari},
  journal= {arXiv preprint arXiv:2108.06256},
  year   = {2021}
}