High-pressure versus isoelectronic doping effect on the honeycomb iridate NaIrO
arXiv:1711.00713 · doi:10.1103/PhysRevB.96.195137
Abstract
We study the effect of isoelectronic doping and external pressure in tuning the ground state of the honeycomb iridate NaIrO by combining optical spectroscopy with synchrotron x-ray diffraction measurements on single crystals. The obtained optical conductivity of NaIrO is discussed in terms of a Mott insulating picture versus the formation of quasimolecular orbitals and in terms of Kitaev-interactions. With increasing Li content , (NaLi)IrO moves deeper into the Mott insulating regime and there are indications that up to a doping level of 24\% the compound comes closer to the Kitaev-limit. The optical conductivity spectrum of single crystalline -LiIrO does not follow the trends observed for the series up to . There are strong indications that -LiIrO is less close to the Kitaev-limit compared to NaIrO and closer to the quasimolecular orbital picture. Except for the pressure-induced hardening of the phonon modes, the optical properties of NaIrO seem to be robust against external pressure. Possible explanations of the unexpected evolution of the optical conductivity with isolectronic doping and the drastic change between and are given by comparing the pressure-induced changes of lattice parameters and the optical conductivity with the corresponding changes induced by doping.
12 pages, 6 figures, accepted for publication in Phys. Rev. B
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Cited by in corpus (7)
- Thermodynamic and Transport Properties in Disordered Kitaev Models
- High-resolution resonant inelastic x-ray scattering study of the electron-phonon coupling in honeycomb -LiIrO
- Optical signature of the pressure-induced dimerization in the honeycomb iridate -LiIrO
- Lattice dynamics and structural transition of the hyperhoneycomb iridate -LiIrO investigated by high-pressure Raman scattering
- Fluorite-related iridate PrIrO: Crystal growth, structure, magnetism, thermodynamic, and optical properties
- Optical conductivity of the metallic pyrochlore iridate PrIrO: Influence of spin-orbit coupling and electronic correlations on the electronic structure
- Topological Majorana flat bands in the Kitaev model on a Bishamon-kikko lattice