Compact localized currents in flat bands with broken time-reversal symmetry
arXiv:2511.23218 · doi:10.1103/mynd-xsr9
Abstract
We develop a systematic framework for constructing all-bands-flat (ABF) lattice Hamiltonians that explicitly break time-reversal symmetry (TRS). By threading magnetic flux through disconnected polygonal plaquettes and applying local entangling unitary transformations, we map plaquettes onto families of ABF models in one, two, and three dimensions. This procedure preserves the flux configuration while converting semi-detangled geometries into ABF lattices with nontrivial hopping structure. The resulting flat bands admit compact localized states (CLSs) whose support includes both the flux-threaded plaquettes and auxiliary sites introduced by the unitary transformations. In these TRS-broken constructions, the CLSs host localized circulatory currents whose magnitude depends on the applied flux. We further extend the framework to lattices with coexisting flat and dispersive bands, illustrating cases with both orthogonal and non-orthogonal CLSs. Our results provide a controlled route for generating dispersionless lattices supporting flux-induced local currents.
15 pages, 8 figures
References in corpus (57)
- Photonic Floquet Topological Insulators
- Observation of a localized flat-band state in a photonic Lieb lattice
- Observation of bound states in Lieb photonic lattices
- Artificial flat band systems: from lattice models to experiments
- Aharonov-Bohm cages in two-dimensional structures
- Photonic Topological Insulator in Synthetic Dimensions
- Coherent driving and freezing of bosonic matter wave in an optical Lieb lattice
- Strongly correlated flat-band systems: The route from Heisenberg spins to Hubbard electrons
- Experimental observation of Aharonov-Bohm cages in photonic lattices
- Detangling Flat Bands into Fano Lattices
- Classification of flat bands according to the band-crossing singularity of Bloch wave functions
- Interaction induced delocalisation for two particles in a periodic potential
- Compact localized states and flatband generators in one dimension
- Circuit Implementation of a Four-Dimensional Topological Insulator
- How to escape Aharonov-Bohm cages ?
- Symmetry classes of disordered fermions
- Photonic Floquet topological insulators in a fractal lattice
- Chiral Flat Bands: Existence, Engineering and Stability
- Localization of weakly disordered flat band states
- Large Quantum Anomalous Hall Effect in Spin-Orbit Proximitized Rhombohedral Graphene
- Preformed pairs in flat Bloch bands
- A simple method to construct Flat Band lattices
- Landau-Zener Bloch oscillations with perturbed flat bands
- Compactly-supported Wannier functions and algebraic -theory
- Flat Band Quantum Scar
- Transport in Sawtooth photonic lattices
- Flat-band many-body localization and ergodicity breaking in the Creutz ladder
- Ferromagnetism in the Hubbard model with Topological/Non-Topological Flat Bands
- Topological Creutz Ladder in a Resonantly Shaken 1D Optical Lattice
- Aharonov-Bohm Caging and Inverse Anderson transition in Ultracold Atoms
- Many-Body Flatband Localization
- Flat bands in fractal-like geometry
- Time-Reversal Symmetry, Anomalies, and Dualities in (2+1)
- Compact localized states and flat bands from local symmetry partitioning
- Universal flatband generator from compact localized states
- Flat-band localization in Creutz superradiance lattices
- Experimental observation of Aharonov-Bohm caging using orbital angular momentum modes in optical waveguides
- Flatband generator in two dimensions
- Nonlinear dynamics of Aharonov-Bohm cages
- Non-Abelian inverse Anderson transitions
- Nonlinear caging in All-Bands-Flat Lattices
- Realization of all-band-flat photonic lattices
- Quantum Caging in Interacting Many-Body All-Bands-Flat Lattices
- General construction of flat bands with and without band crossings based on wave function singularity
- Nonlinear symmetry breaking of Aharonov-Bohm cages
- Flat-band localization and interaction-induced delocalization of photons
- From compact localized states to many-body scars in the random quantum comb
- Multiple quantum scar states and emergent slow-thermalization in the flat-band system
- Non-thermalized Dynamics of Flat-Band Many-Body Localization
- Observation of inverse Anderson transitions in Aharonov-Bohm topolectrical circuits
- Decoding flat bands from compact localized states
- Designer quantum states on a fractal substrate: compact localization, flat bands and the edge modes
- Methods for the construction of interacting many-body Hamiltonians with compact localized states in geometrically frustrated clusters
- Flat Bands and Compact Localised States: A Carrollian roadmap
- Two-flux tunable Aharonov-Bohm caging in a photonic lattice
- Symmetry-protected flatband condition for Hamiltonians with local symmetry
- Topological Triviality of Flat Hamiltonians