Fragile topological phase on the triangular kagome lattice and its bulk-boundary correspondence
arXiv:2202.11736 · doi:10.1103/PhysRevB.107.155129
Abstract
We predict and examine various topological states on a two-dimensional (2D) triangular kagome lattice (TKL) using the tight-binding (TB) models and theory of topological quantum chemistry (TQC). Firstly, on the basis of TQC, we diagnose band structures with fragile topology and calculate Wilson-loop spectra and Hofstadter butterfly spectra to confirm their non-trivial nature. Secondly, we examine the bulk-boundary correspondence and find that an obstructed-atomic-limit (OAL) insulator hosts fractional corner states without being accompanied by fragile topological band structures, which implies that the presence of OALs and corner states is not a sufficient condition to fragile topology. Last but not least, we predict a topological phase transition from a second-order topological phase to a first-order topological phase that can be realized in the TKL under the action of a magnetic field.
9 pages, 14 figures
References in corpus (27)
- -dimensional edge states of rotation symmetry protected topological states
- CsVSb: a topological kagome metal with a superconducting ground state
- Higher-order topological insulators and semimetals on the breathing Kagome and pyrochlore lattices
- The space group classification of topological band insulators
- Concurrence of anomalous Hall effect and charge density wave in a superconducting topological kagome metal
- Building Blocks of Topological Quantum Chemistry: Elementary Band Representations
- Realization of an acoustic third-order topological insulator
- Pressure-induced Reemergence of Superconductivity in Topological Kagome Metal CsV3Sb5
- Twisted bilayer graphene. II. Stable symmetry anomaly
- Geometric approach to fragile topology beyond symmetry indicators
- Fragile topology and flat-band superconductivity in the strong-coupling regime
- Hofstadter Topology: Non-crystalline Topological Materials at High Flux
- Spin-Orbit-Induced Topological Flat Bands in Line and Split Graphs of Bipartite Lattices
- Multiple Flat Bands and Topological Hofstadter Butterfly in Twisted Bilayer Graphene Close to the Second Magic Angle
- Reentrant Correlated Insulators in Twisted Bilayer Graphene at 25T ( Flux)
- XXZ and Ising Spins on the Triangular Kagome Lattice
- Subdimensional topologies, indicators and higher order phases
- Geometric characterization of anomalous Landau levels of isolated flat bands
- Fragile topology in line-graph lattices with two, three, or four gapped flat bands
- Thermodynamics of Ising spins on the Triangular Kagome Lattice: Exact analytical method and Monte Carlo simulations
- Fragile topologically flat band in the checkerboard antiferromagnetic monolayer FeSe
- Hofstadter butterfly and Floquet topological insulators in minimally twisted bilayer graphene
- Tunable Fragile Topology in Floquet Systems
- Landau Levels as a Probe for Band Topology in Graphene Moiré Superlattices
- Landau Levels of the Euler Class Topology
- Dimers on the Triangular Kagome Lattice
- Dynamical Fragile Topology in Floquet Crystals