The field-angle anisotropy of proximate Kitaev systems under an in-plane magnetic field
arXiv:2107.04785 · doi:10.1103/PhysRevResearch.3.043032
Abstract
We have investigated the field-angle behaviors of magnetic excitations under an in-plane magnetic field for proximate Kitaev systems. By employing the exact diagonalization method in conjunction with the linear spin wave theory, we have demonstrated that the magnetic excitation gap in the polarized phase is determined by the magnon excitation at points and has a strong anisotropy with respect to the field direction in the vicinity of the critical field limit. The specific heat from this magnon excitation bears qualitatively the same anisotropic behaviors as expected one for the non-Abelian spin liquid phase in the Kitaev model and experimentally observed one of the intermediate phases in -RuCl.
6 pages, 4 figures, Supplemental material (9 pages, 6 figures)
References in corpus (16)
- Mott Insulators in the Strong Spin-Orbit Coupling Limit: From Heisenberg to a Quantum Compass and Kitaev Models
- Models and Materials for Generalized Kitaev Magnetism
- Scattering Continuum and Possible Fractionalized Excitations in -RuCl
- Magnetic order in -RuCl: a honeycomb lattice quantum magnet with strong spin-orbit coupling
- Successive magnetic phase transitions in -RuCl: XY-like frustrated magnet on the honeycomb lattice
- Kitaev magnetism in honeycomb RuCl3 with intermediate spin-orbit coupling
- Spin-wave excitations evidencing the Kitaev interaction in single crystalline -RuCl
- Magnetic Excitations and Continuum of a Field-Induced Quantum Spin Liquid in -RuCl
- Theory of the field-revealed Kitaev spin liquid
- Proximate ferromagnetic state in the Kitaev model material -RuCl
- Sign structure of thermal Hall conductivity for in-plane-field polarized Kitaev magnets
- Low Temperature Lanczos Method
- Unconventional spin dynamics in the honeycomb-lattice material -RuCl: high-field ESR studies
- Field-induced intermediate ordered phase and anisotropic interlayer interactions in -RuCl
- Nature of Magnetic Excitations in the High-Field Phase of -RuCl
- Angle-dependent thermodynamics of -RuCl