Visualizing a Bosonic Symmetry Protected Topological Phase in an Interacting Fermion Model
arXiv:1606.05822 · doi:10.1103/PhysRevB.94.165121
Abstract
Symmetry protected topological (SPT) phases in free fermion and interacting bosonic systems have been classified, but the physical phenomena of interacting fermionic SPT phases have not been fully explored. Here, employing large-scale quantum Monte Carlo simulation, we investigate the edge physics of a bilayer Kane-Mele-Hubbard model with zigzag ribbon geometry. Our unbiased numerical results show that the fermion edge modes are gapped out by interaction, while the bosonic edge modes remain gapless at the boundary, before the bulk quantum phase transition to a topologically trivial phase. Therefore, finite fermion gaps both in the bulk and on the edge, together with the robust gapless bosonic edge modes, prove that our system becomes an emergent bosonic SPT phase at low energy, which is, for the first time, directly observed in an interacting fermion lattice model.
5 pages, 5 figures in the main text; 5 pages, 8 figures in the supplemental material
References in corpus (9)
- Three dimensional topological invariants for time reversal invariant Hamiltonians and the three dimensional quantum spin Hall effect
- Quantum spin-liquid emerging in two-dimensional correlated Dirac fermions
- Physics of three dimensional bosonic topological insulators: Surface Deconfined Criticality and Quantized Magnetoelectric Effect
- Quantum Phase Transitions Between Bosonic Symmetry Protected Topological States Without Sign Problem: Nonlinear Sigma Model with a Topological Term
- Topological invariants for interacting topological insulators: II. Breakdown of the Green's function formalism
- Bridging Fermionic and Bosonic Short Range Entangled States
- Bosonic integer quantum Hall states in topological bands with Chern number two
- Bridging coupled wires and lattice Hamiltonian for two-component bosonic quantum Hall states
- Topological edge Mott insulating state in two dimensions at finite temperatures -bulk and edge analysis-
Cited by in corpus (15)
- Non-Hermitian perspective of the band structure in heavy-fermion systems
- Duality between the deconfined quantum-critical point and the bosonic topological transition
- Dynamical Signature of Fractionalization at the Deconfined Quantum Critical Point
- Monte Carlo Study of Lattice Compact Quantum Electrodynamics with Fermionic Matter: the Parent State of Quantum Phases
- Self-Learning Determinantal Quantum Monte Carlo Method
- Chiral-symmetry protected exceptional torus in correlated nodal-line semi-metals
- Breakdown of topological Thouless pumping in the strongly interacting regime
- From Bosonic Topological Transition to Symmetric Fermion Mass Generation
- Symmetry-protected topological states for interacting fermions in alkaline-earth-like atoms
- Correlation Effects in Quadrupole Insulators: a Quantum Monte Carlo Study
- Continuous phase transitions between fractional quantum Hall states and symmetry-protected topological states
- Topological properties of magnetically ordered heavy-fermion systems in the presence of mirror symmetry
- Accelerating ground-state auxiliary-field quantum Monte Carlo simulations by delayed update and block force-bias update
- Bosonic SET to SPT Transition under Dyonic LSM Theorem
- Combined spontaneous symmetry-breaking and symmetry-protected topological order from cluster charge interaction