Quantum spin liquid ground states of the Heisenberg-Kitaev model on the triangular lattice
arXiv:1611.05454 · doi:10.1103/PhysRevB.95.024421
Abstract
We study quantum disordered ground states of the two dimensional Heisenberg-Kitaev model on the triangular lattice using a Schwinger boson approach. Our aim is to identify and characterize potential gapped quantum spin liquid phases that are stabilized by anisotropic Kitaev interactions. For antiferromagnetic Heisenberg- and Kitaev couplings and sufficiently small spin we find three different symmetric spin liquid phases, separated by two continuous quantum phase transitions. Interestingly, the gap of elementary excitations remains finite throughout the transitions. The first spin liquid phase corresponds to the well known zero-flux state in the Heisenberg limit, which is stable with respect to small Kitaev couplings and develops order in the semi-classical limit at large . In the opposite Kitaev limit we find a different spin liquid ground-state, which is a quantum disordered version of a magnetically ordered state with antiferromagnetic chains, in accordance with results in the classical limit. Finally, at intermediate couplings we find a spin liquid state with unconventional spin correlations. Upon spinon condensation this state develops Bragg peaks at incommensurate momenta in close analogy to the magnetically ordered Z2 vortex crystal phase, which has been analyzed in recent theoretical works.
14 pages, 13 figures
References in corpus (14)
- 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
- Quantum magnetism and criticality
- Quantum spin Hall effect in a transition metal oxide Na2IrO3
- Exact results for spin dynamics and fractionization in the Kitaev Model
- A classification of symmetry enriched topological phases with exactly solvable models
- Spin Liquid States on the Triangular and Kagome Lattices: A Projective Symmetry Group Analysis of Schwinger Boson States
- Classifying fractionalization: symmetry classification of gapped Z2 spin liquids in two dimensions
- Spin-orbit physics of j=1/2 Mott insulators on the triangular lattice
- Quantized topological terms in weak-coupling gauge theories with symmetry and their connection to symmetry enriched topological phases
- Spin liquid behaviour in Jeff=1/2 triangular lattice Ba3IrTi2O9
- Time-reversal-symmetry-breaking chiral spin liquids: a projective symmetry group approach of bosonic mean-field theories
- Magnetic ordering phenomena of interacting quantum spin Hall models
- Global phase diagram, possible chiral spin liquid and topological superconductivity in the triangular Kitaev-Heisenberg model