English

Resonant X-Ray Diffraction Study of Strongly Spin-Orbit-Coupled Mott Insulator CaIrO3

Strongly Correlated Electrons 2011-08-24 v1

Abstract

We performed resonant x-ray diffraction experiments at the LL absorption edges for the post-perovskite-type compound CaIrO3_{3} with (t2g)5(t_{2g})^5 electronic configuration. By observing the magnetic signals, we could clearly see that the magnetic structure was a striped order with an antiferromagnetic moment along the c-axis and that the wavefunction of a t2gt_{2g} hole is strongly spin-orbit entangled, the Jeff=1/2J_{\rm eff} =1/2 state. The observed spin arrangement is consistent with theoretical work predicting a unique superexchange interaction in the Jeff=1/2J_{\rm eff} =1/2 state and points to the universal importance of the spin-orbit coupling in Ir oxides, irrespective of the local coordination and lattice topology. We also propose that the non-magnetic resonant scattering is a powerful tool for unraveling an orbital state even in a metallic iridate.

Keywords

Cite

@article{arxiv.1108.4523,
  title  = {Resonant X-Ray Diffraction Study of Strongly Spin-Orbit-Coupled Mott Insulator CaIrO3},
  author = {Kenya Ohgushi and Jun-ichi Yamaura and Hiroyuki Ohsumi and Kunihisa Sugimoto and Soshi Takeshita and Akihisa Tokuda and Hidenori Takagi and Masaki Takata and Taka-hisa Arima},
  journal= {arXiv preprint arXiv:1108.4523},
  year   = {2011}
}

Comments

5 pages, 3 figures

R2 v1 2026-06-21T18:54:00.687Z