English

Covalency-driven collapse of strong spin-orbit coupling in face-sharing iridium octahedra

Strongly Correlated Electrons 2018-11-14 v2 Materials Science

Abstract

We report ab-initio\textit{ab-initio} density functional theory calculation and Raman scattering results to explore the electronic structure of Ba5_5CuIr3_3O12_{12} single crystals. This insulating iridate, consisting of face-sharing IrO6_6 octahedra forming quasi-one-dimensional chains, cannot be described by the local jeffj_{\rm eff}=1/2 moment picture commonly adopted for discussing electronic and magnetic properties of iridate compounds with IrO6_6 octahedra. The shorter Ir-Ir distance in the face-sharing geometry, compared to corner- or edge-sharing structures, leads to strong covalency between neighboring Ir. Then this strong covalency results in the formation of molecular orbitals (MO) at each Ir trimers as the low-energy electronic degree of freedom. The theoretically predicted three-peak structure in the joint density of states, a distinct indication of deviation from the jeffj_{\rm eff}=1/2 picture, is verified by observing the three-peak structure in the electronic excitation spectrum by Raman scattering.

Keywords

Cite

@article{arxiv.1808.10407,
  title  = {Covalency-driven collapse of strong spin-orbit coupling in face-sharing iridium octahedra},
  author = {Mai Ye and Heung-Sik Kim and Jae-Wook Kim and Choong-Jae Won and Kristjan Haule and David Vanderbilt and Sang-Wook Cheong and Girsh Blumberg},
  journal= {arXiv preprint arXiv:1808.10407},
  year   = {2018}
}

Comments

5 pages, 5 figures, with a Supplementary Information