High-energy electronic excitations in SrIrO observed by Raman scattering
arXiv:1411.2041 · doi:10.1103/PhysRevB.91.195140
Abstract
Spin-orbit interaction in SrIrO leads to the realization of the = 1/2 state and also induces an insulating behavior. Using large-shift Raman spectroscopy, we found two high-energy excitations of the d-shell multipletat at 690 meV and 680 meV with and symmetry respectively. As temperature decreases, the and peaks narrow, and the peak shifts to higher energy while the energy of the peak remains the same. When 25 of Ir is substituted with Rh the peak softens by 10 but the peak does not. We show that both pseudospin-flip and non-pseudosin-flip dd electronic transitions are Raman active, but only the latter are observed.
References in corpus (10)
- Mott Insulators in the Strong Spin-Orbit Coupling Limit: From Heisenberg to a Quantum Compass and Kitaev Models
- Novel Jeff = 1/2 Mott State Induced by Relativistic Spin-Orbit Coupling in Sr2IrO4
- Inelastic Light Scattering From Correlated Electrons
- 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
- Microscopic study of spin-orbit-induced Mott insulator in Ir oxides
- Excitonic quasiparticles in a spin-orbit Mott insulator
- Testing the validity of the strong spin-orbit-coupling limit for octahedrally coordinated iridates in a model system SrCuIrO
- Neutron scattering study of correlated phase behavior in Sr2IrO4
- Electronic structures of layered perovskite Sr2MO4 (M=Ru, Rh, and Ir)