Phase-Sensitive Observation of a Spin-Orbital Mott State in Sr 2 IrO 4
Hiroshima University · Kwansei Gakuin University · +3 more institutions
Abstract
Measurement of the quantum-mechanical phase in quantum matter provides the most direct manifestation of the underlying abstract physics. We used resonant x-ray scattering to probe the relative phases of constituent atomic orbitals in an electronic wave function, which uncovers the unconventional Mott insulating state induced by relativistic spin-orbit coupling in the layered 5d transition metal oxide Sr2IrO4. A selection rule based on intra-atomic interference effects establishes a complex spin-orbital state represented by an effective total angular momentum = 1/2 quantum number, the phase of which can lead to a quantum topological state of matter.
Citation impact
- FWCI
- 34.71
- Percentile
- 100%
- References
- 7
Authors
7- BKBeomjoon KimCorresponding
Hiroshima University, Kwansei Gakuin University, SPring-8, RIKEN Advanced Science Institute, The University of Tokyo
- HOH. Ohsumi
Hiroshima University, Kwansei Gakuin University, SPring-8, RIKEN Advanced Science Institute, The University of Tokyo
- TKTakashi Komesu
Hiroshima University, Kwansei Gakuin University, SPring-8, RIKEN Advanced Science Institute, The University of Tokyo
- SSShiro Sakai
Hiroshima University, Kwansei Gakuin University, SPring-8, RIKEN Advanced Science Institute, The University of Tokyo
- TMT. Morita
Hiroshima University, Kwansei Gakuin University, SPring-8, RIKEN Advanced Science Institute, The University of Tokyo
Topics & keywords
- Physics
- Atomic orbital
- Spin (aerodynamics)
- Condensed matter physics
- Quantum phase transition
- Angular momentum
- Total angular momentum quantum number
- Phase (matter)