Floquet-Engineered Topological Flat Bands in Irradiated Twisted Bilayer Graphene
arXiv:1910.04711 · doi:10.1103/PhysRevResearch.2.043275
Abstract
We propose a tunable optical setup to engineer topologically nontrivial flat bands in twisted bilayer graphene under circularly polarized light. Using both analytical and numerical calculations, we demonstrate that nearly flat bands can be engineered at small twist angles near the magic angles of the static system. The flatness and the gaps between these bands can be tuned optically by varying laser frequency and amplitude. We study the effects of interlayer hopping variations on Floquet flat bands and find that lattice relaxation favors their formation. Furthermore, we find that, once formed, the flat bands carry nonzero Chern numbers. We show that at currently known values of parameters, such topological flat bands can be realized using circularly polarized UV laser light. Thus, our work opens the way to creating optically tunable, strongly correlated topological phases of electrons in moiré superlattices.
5 pages, 3 figures
References in corpus (22)
- The electronic properties of graphene
- Photovoltaic Hall effect in graphene
- Flat Bands in Slightly Twisted Bilayer Graphene
- Single Layer Behavior and Its Breakdown in Twisted Graphene Layers
- Continuum Model of the Twisted Bilayer
- Lattice relaxation and energy band modulation in twisted bilayer graphenes
- Photo-Induced Topological Phase Transition and a Single Dirac-Cone State in Silicene
- Out of equilibrium electrons and the Hall conductance of a Floquet topological insulator
- Effective Theory of Floquet Topological Transitions
- Topological invariants of Floquet systems: General formulation, special properties, and Floquet topological defects
- Band structure and topological property of twisted double bilayer graphenes
- Modulated Floquet Topological Insulators
- Continuum models for twisted bilayer graphene: the effects of lattice deformation and hopping parameter
- Radiation effects on the electronic structure of bilayer graphene
- Topologically Protected Zero Modes in Twisted Bilayer Graphene
- Generation of valley polarized current in bilayer graphene
- Landau levels in twisted bilayer graphene and semiclassical orbits
- Unpaired Floquet Majorana fermions without magnetic fields
- Materials design from non-equilibrium steady states: driven graphene as a tunable semiconductor with topological properties
- Optically induced flat bands in twisted bilayer graphene
- Dynamics of tunneling into nonequilibrium edge states
- Probing Layer Localization in Twisted Graphene Bilayers via Cyclotron Resonance
Cited by in corpus (32)
- Light-induced emergent phenomena in 2D materials and topological materials
- Optically induced flat bands in twisted bilayer graphene
- Light-matter coupling and quantum geometry in moiré materials
- Tunable moiré materials for probing Berry physics and topology
- Effective Floquet Hamiltonians for periodically-driven twisted bilayer graphene
- Floquet engineering of interlayer couplings: Tuning the magic angle of twisted bilayer graphene at the exit of a waveguide
- Floquet-engineering topological transitions in a twisted transition metal dichalcogenide homobilayer
- Recent Developments in Fractional Chern Insulators
- Twistronics of Janus transition metal dichalcogenide bilayers
- Light-induced phase crossovers in a quantum spin Hall system
- Topological flat bands in strained graphene: substrate engineering and optical control
- Valley-selective Floquet Chern Flat Bands in Twisted Multilayer Graphene
- Chiral limits and effect of light on the Hofstadter butterfly in twisted bilayer graphene
- Dirac Magic and Lifshitz Transitions in AA-Stacked Twisted Multilayer Graphene
- Topological Mixed Valence Model in Magic-Angle Twisted Bilayer Graphene
- Tuning of Bilayer Graphene Heterostructure by Horizontally Incident Circular Polarized Light
- Optical Control of Slow Topological Electrons in Moiré Systems
- Band structure and band topology in twisted homotrilayer transition metal dichalcogenides
- Light driven magnetic transitions in transition metal dichalcogenide heterobilayers
- Floquet Graphene Antidot Lattices
- Modulating dichroism and optical conductivity in bilayer graphene under intense electromagnetic field irradiation
- Floquet Fractional Chern Insulators and Competing Phases in Twisted Bilayer Graphene
- Topological Floquet Flat Bands in Irradiated Alternating Twist Multilayer Graphene
- Low-frequency and Moiré Floquet engineering: a review
- Localized Floquet states in gated bilayer graphene induced by a focused optical beam with orbital angular momentum
- Time-resolved ARPES and optical transport properties of irradiated twisted bilayer graphene in steady-state
- Floquet Gauge Pumps as Sensors for Spectral Degeneracies Protected by Symmetry or Topology
- Effective K valley Hamiltonian for TMD bilayers under pressure and application to twisted bilayers with pressure-induced topological phase transitions
- Floquet engineering and non-equilibrium topological maps in twisted trilayer graphene
- Floquet-Engineered Valley-Topotronics in Kekulé-Y Bond Textured Graphene Superlattice
- Light induced transitions of valley Chern numbers and flat bands in a non-twisted moire graphene-hexagonal boron nitride superlattice
- Intervalley Band Crossing and Transition of Fractional Chern Insulators in Floquet Twisted Bilayer MoTe