English

Complex Orbital State Stabilized by Strong Spin-Orbit Coupling in a Metallic Iridium Oxide IrO$_{2}$

Strongly Correlated Electrons 2015-06-12 v1

Abstract

Resonant x-ray diffraction experiments were performed for the metallic iridium oxide IrO2_{2}. We observed anisotropic tensor of susceptibility (ATS) scattering, the spectrum of which shows a sharp contrast between the L3L_{3} and L2L_{2} edges. At the L3L_{3} edge, resonance excitations were clearly observed from the core 2pp orbitals to both the 5dd t2gt_{2g} and ege_{g} orbitals. In contrast, the resonance mode associated with 5dd t2gt_{2g} orbitals was indiscernible at the L2L_{2} edge. This contrasting behavior indicates that Ir 5dd t2gt_{2g} orbitals are fairly close to the JeffJ_{\rm eff} = 1/2 state due to the strong spin--orbit coupling in 5dd transition metal ions, as in the Mott insulator Sr2_{2}IrO4_{4}. Our results clearly demonstrate that ATS scattering is a useful probe for investigating complex orbital states in a metallic state. Such states induce novel phenomena such as the spin Hall effect.

Keywords

Cite

@article{arxiv.1211.5855,
  title  = {Complex Orbital State Stabilized by Strong Spin-Orbit Coupling in a Metallic Iridium Oxide IrO$_{2}$},
  author = {Yasuyuki Hirata and Kenya Ohgushi and Jun-ichi Yamaura and Hiroyuki Ohsumi and Soshi Takeshita and Masaki Takata and Takahisa Arima},
  journal= {arXiv preprint arXiv:1211.5855},
  year   = {2015}
}
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