Fractional quantum anomalous Hall effect in a singular flat band
arXiv:2405.01829 · doi:10.1103/PhysRevLett.134.196501
Abstract
In the search of fractional quantum anomalous Hall (FQAH) effect, the conventional wisdom is to start from a flat Chern band isolated from the rest of the Hilbert space by band gaps, so that many-body interaction can be projected to a landscape that mimics a Landau level. Singular flat bands (SFB), which share protected touching points with other dispersive bands, represent another type of flat landscapes differing from Landau levels and Chern bands in topological and geometric properties. Here we report the finding of FQAH phases in a SFB, which emerges in the bipartite limit of the nearest-neighbor tight-binding model of twisted bilayer MoTe. At 1/3 and 2/3 filling of the SFB, FQAH effects are demonstrated using density matrix renormalisation group calculations with all bands, as well as exact diagonalization calculations with the two touching bands. Gapping the band touching can turn the SFB into a nearly flat Chern band, but counter-intuitively this suppresses the FQAH effect, as the gap opening introduces strong inhomogeneity to the quantum geometry. An optical scheme to realize such SFB for cold atoms is provided. Our findings uncover a new arena for the exploration of fractional quantum Hall physics beyond the Landau level and Chern insulator paradigms.
References in corpus (23)
- Entanglement Spectrum as a Generalization of Entanglement Entropy: Identification of Topological Order in Non-Abelian Fractional Quantum Hall Effect States
- High temperature fractional quantum Hall states
- Fractional quantum Hall states at zero magnetic field
- The ITensor Software Library for Tensor Network Calculations
- Nearly-flat bands with nontrivial topology
- Signatures of Fractional Quantum Anomalous Hall States in Twisted MoTe2 Bilayer
- Observation of Fractionally Quantized Anomalous Hall Effect
- Fractional quantum Hall effect in the absence of Landau levels
- Quantum anomalous Hall effect from intertwined moiré bands
- Integer and fractional Chern insulators in twisted bilayer MoTe2
- Colloquium: Quantum anomalous Hall effect
- Topological Insulators and Nematic Phases from Spontaneous Symmetry Breaking in 2D Fermi Systems with a Quadratic Band Crossing
- Observation of integer and fractional quantum anomalous Hall effects in twisted bilayer MoTe2
- Optical Flux Lattices for Ultracold Atomic Gases
- Wavefunctionology: The Special Structure of Certain Fractional Quantum Hall Wavefunctions
- Thirty Years of Composite Fermions and Beyond
- Anomalous Hall Crystals in Rhombohedral Multilayer Graphene I: Interaction-Driven Chern Bands and Fractional Quantum Hall States at Zero Magnetic Field
- Theory of quantum anomalous Hall phases in pentalayer rhombohedral graphene moiré structures
- Maximally Localized Wannier Orbitals, Interaction Models and Fractional Quantum Anomalous Hall Effect in Twisted Bilayer MoTe2
- Pressure--enhanced fractional Chern insulators in moiré transition metal dichalcogenides along a magic line
- Adiabatic continuity between Hofstadter and Chern insulator states
- Theory of fractional Chern insulator states in pentalayer graphene moiré superlattice
- Thermodynamic Response and Neutral Excitations in Integer and Fractional Quantum Anomalous Hall States Emerging from Correlated Flat Bands
Cited by in corpus (10)
- Theory of Generalized Landau Levels and Implication for non-Abelian States
- Twistronics and moiré superlattice physics in 2D transition metal dichalcogenides
- Fractional Chern insulator states in an isolated flat band of zero Chern number
- Identifying Instabilities with Quantum Geometry in Flat Band Systems
- Singular flat bands in three dimensions: Landau level spreading, quantum geometry, and Weyl reconstruction
- Topological electron and phonon flat bands in novel kagome superconductor XPd5 (X=Ca, Sr, Ba)
- Refining Heuristic Predictors of Fractional Chern Insulators using Machine Learning
- Reduced Wannier representation for topological bands
- Abelian and non-Abelian fractionalized states in twisted MoTe: A generalized Landau-level theory
- Spin-orbit-driven quarter semimetals in rhombohedral graphene