Zeeman field induced corner states in the Kane-Mele-Hubbard model
arXiv:2408.09492 · doi:10.1103/PhysRevB.111.035111
Abstract
We investigate how the in-plane Zeeman field and the Hubbard interaction can jointly affect the topological states in the Kane-Mele-Hubbard model. At low Zeeman field, the projector quantum Monte Carlo (PQMC) simulations demonstrate Mott transitions between the higher-order topological insulator induced by the in-plane Zeeman field and the antiferromagnetic insulator induced by the Hubbard interaction. The interacting higher-order topological state on a finite-sized honeycomb lattice is characterized by the local density of states derived from the real-space spectral function. In the higher-order topological phase, the mirror-inversion symmetry protected corner states exist on the diamond-shaped honeycomb lattice. By comparing the spatial distribution of corner states between the Kane-Mele and Kane-Mele-Hubbard models, we show that the effect of the Hubbard interaction is to contribute some extra in-plane Zeeman field. At the mean-field level, we calculate the full phase diagram of the Kane-Mele-Hubbard model under the influence of the in-plane Zeeman field. The mean-field phase diagram shows that a high in-plane Zeeman field drives the system into a spin-polarized (topologically trivial) phase. In particular, the upper limit of the Zeeman field that can induce corner states in the Kane-Mele model is found to be . In the parameter region of PQMC simulations, the mean-field solutions are in fair agreement with the PQMC results.
9 pages, 11 figures
References in corpus (22)
- Topological Insulators with Inversion Symmetry
- Electric Multipole Moments, Topological Multipole Moment Pumping, and Chiral Hinge States in Crystalline Insulators
- -dimensional edge states of rotation symmetry protected topological states
- Higher-order topological insulators and semimetals on the breathing Kagome and pyrochlore lattices
- Classical higher-order topological insulators
- New topological invariants in non-Hermitian systems
- Surface State Magnetization and Chiral Edge States on Topological Insulators
- Higher-Order Weyl Semimetals
- Higher-order Weyl Semimetals
- Progress on stochastic analytic continuation of quantum Monte Carlo data
- Higher-order topological phases on fractal lattices
- Quadrupole topological insulators in Ta2M3Te5 (M= Ni, Pd) monolayers
- Failure of Topological Invariants in Strongly Correlated Matter
- Coulomb instabilities of 3D higher-order topological insulators
- Magnetic field induced semimetal-to-canted-antiferromagnet transition on the honeycomb lattice
- Kane-Mele-Hubbard model on the -flux honeycomb lattice
- Transport Induced Dimer State from Topological Corner States
- Replica Higher-Order Topology of Hofstadter Butterflies in Twisted Bilayer Graphene
- Topological Mott transition in a Weyl-Hubbard model with dynamical mean-field theory
- Green's Function Approach to Interacting Higher-order Topological Insulators
- Higher-order topological insulator in a modified Haldane-Hubbard model
- Magnetic phase transition in disordered interacting Dirac fermion systems via the Zeeman field