Evolution of electronic structure of Ru-doped single-crystal iridiates, SrIrRuO
arXiv:2110.00732 · doi:10.1103/PhysRevB.104.165106
Abstract
We investigated Ru-doped single-crystal 5 iridiates, SrIrRuO, at three different doping concentrations ( 0.01, 0.07 and 0.10) using optical spectroscopy. The undoped pristine compound (SrIrO) is known as a novel = 1/2 Mott insulator. Remarkably, the optical conductivity spectra of all three samples exhibited the insulating behavior, although we observed weak Drude components in the optical conductivity spectra down to the lowest temperature of 30 K. The charge-carrier densities of the Ru-doped iridiates estimated from the Drude components are significantly smaller than the expected values estimated from the nominal Ru-doping concentrations. Herein, we provide temperature- and doping-dependent electronic structure evolution of Ru-doped iridiates. We expect that our results will be useful for understanding the intriguing Ru-doping-dependent properties of 5 iridiate SrIrO.
18 pages, 8 figures
References in corpus (7)
- Novel Jeff = 1/2 Mott State Induced by Relativistic Spin-Orbit Coupling in Sr2IrO4
- Electrodynamics of Correlated Electron Materials
- Bandwidth-Controlled Insulator-Metal Transition and Correlated Metallic State in 5 Transition Metal Oxides SrIrO (=1, 2, and )
- The magnetic and crystal structures of Sr2IrO4: A neutron diffraction study
- Role of electron-electron and electron-phonon interaction effect in the optical conductivity of VO2
- A structural distortion induced magneto-elastic locking in SrIrO revealed through nonlinear optical harmonic generation
- Manifestation of pseudogap in ab-plane optical characteristics