Generic Field-Driven Phenomena in Kitaev Spin Liquids: Canted Magnetism and Proximate Spin Liquid Physics
arXiv:2010.05921 · doi:10.1103/PhysRevB.103.064417
Abstract
Topological spin liquids in two spatial dimensions are stable phases in the presence of a small magnetic field, but may give way to field-induced phenomena at intermediate field strengths. Sandwiched between the low-field spin liquid physics and the high-field spin-polarized phase, the exploration of magnetic phenomena in this intermediate regime however often remains elusive to controlled analytical approaches. Here we numerically study such intermediate-field magnetic phenomena for two representative Kitaev models (on the square-octagon and decorated honeycomb lattice) that exhibit either Abelian or non-Abelian topological order in the low-field limit. Using a combination of exact diagonalization and density matrix renormalization group techniques, as well as linear spin-wave theory, we establish the generic features of Kitaev spin liquids in an external magnetic field. While ferromagnetic models typically exhibit a direct transition to the polarized state at a relatively low field strength, antiferromagnetic couplings not only substantially stabilizes the topological spin liquid phase, but generically lead to the emergence of a distinct field-induced intermediate regime, separated by a crossover from the high-field polarized regime. Our results suggest that, for most lattice geometries, this regime generically exhibits significant spin canting, antiferromagnetic spin-spin correlations, and an extended proximate spin liquid regime at finite temperatures. Notably, we identify a symmetry obstruction in the original honeycomb Kitaev model that prevents, at least for certain field directions, the formation of such canted magnetism without breaking symmetries -- consistent with the recent numerical observation of an extended gapless spin liquid in this case.
13 pages, 16 figures (Appendix: 7 pages, 7 figures)
References in corpus (15)
- An exact chiral spin liquid with non-Abelian anyons
- Hyper-honeycomb iridate -Li2IrO3 as a platform for Kitaev magnetism
- Time-evolving a matrix product state with long-ranged interactions
- Vaporization of Kitaev spin liquids
- Magnetization processes of zigzag states on the honeycomb lattice: Identifying spin models for -RuCl and NaIrO
- Microscopic mechanism for higher-spin Kitaev model
- Honeycomb-lattice Heisenberg-Kitaev model in a magnetic field: Spin canting, metamagnetism, and vortex crystals
- Spin-S Kitaev model: Classical Ground States, Order by Disorder and Exact Correlation Functions
- Weyl spin liquids
- Order-by-disorder and spin-orbital liquids in a distorted Heisenberg-Kitaev model
- Perturbative study of the Kitaev model with spontaneous time-reversal symmetry breaking
- Crystalline Kitaev spin liquids
- Thermodynamic classification of three-dimensional Kitaev spin liquids
- Classical Heisenberg spins on a hexagonal lattice with Kitaev couplings
- Universal Thermodynamics in the Kitaev Fractional Liquid
Cited by in corpus (12)
- Benchmarking variational quantum eigensolvers for the square-octagon-lattice Kitaev model
- Symmetry Analysis of Tensors in the Honeycomb Lattice of Edge-Sharing Octahedra
- Thermally enhanced Majorana-mediated spin transport in the Kitaev model
- Classical spin liquid on the generalized four-color Kitaev model
- Local spin-flip transitions induced by magnetic quantum impurities in two-dimensional magnets
- Dimensional reduction of Kitaev spin liquid at quantum criticality
- Dynamic structure factor of the antiferromagnetic Kitaev model in large magnetic fields
- Kitaev honeycomb antiferromagnet in a field: quantum phase diagram for general spin
- A primer on Kitaev Model: Basic aspects, material realization, and recent experiments
- Field tuning Kitaev systems for spin fractionalization and topological order
- Microscopic theory of field-tuned topological transitions in the Kitaev honeycomb model
- Stability of ordered and disordered phases in the Heisenberg-Kitaev model in a magnetic field