Flat bands and perfect metal in trilayer moiré graphene
arXiv:1901.05469 · doi:10.1103/PhysRevLett.123.026402
Abstract
We investigate the electronic structure of a twisted multilayer graphene system forming a moiré pattern. We consider small twist angles separating the graphene sheets and develop a low-energy theory to describe the coupling of Dirac Bloch states close to the K point in each individual plane. Extending beyond the bilayer case, we show that, when the ratio of the consecutive twist angles is rational, a periodicity emerges in quasimomentum space with moiré Bloch bands even when the system does not exhibit a crystalline lattice structure in real space. For a trilayer geometry, we find flat bands in the spectrum at certain rotation angles. Performing a symmetry analysis of the band model for the trilayer, we prove that the system is a perfect metal in the sense that it is gapless at all energies. This striking result originates from the three Dirac cones which can only gap in pairs and produce bands with an infinite connectivity. The full gapless property is protected by an emergent particle-hole symmetry valid at sufficiently small angles.
4+6 pages, 2+3 figures
References in corpus (4)
Cited by in corpus (50)
- Tunable Phase Boundaries and Ultra-Strong Coupling Superconductivity in Mirror Symmetric Magic-Angle Trilayer Graphene
- Superconductivity and strong interactions in a tunable moiré quasiperiodic crystal
- Theory of zero-field superconducting diode effect in twisted trilayer graphene
- Magic-angle helical trilayer graphene
- Correlated insulators, semimetals, and superconductivity in twisted trilayer graphene
- In-plane critical magnetic fields in magic-angle twisted trilayer graphene
- Local atomic stacking and symmetry in twisted graphene trilayers
- Band Structure and Superconductivity in Twisted Trilayer Graphene
- Higher-order van Hove singularity in magic-angle twisted trilayer graphene
- Flat bands, strains, and charge distribution in twisted-bilayer hBN
- Functional Renormalization Group Study of Superconductivity in Rhombohedral Trilayer Graphene
- Electrical band flattening, valley flux, and superconductivity in twisted trilayer graphene
- Supermoiré low-energy effective theory of twisted trilayer graphene
- Topological Flat Bands and Correlated States in Twisted Monolayer-Bilayer Graphene
- TSTG I: Single-Particle and Many-Body Hamiltonians and Hidden Non-local Symmetries of Trilayer Moiré Systems with and without Displacement Field
- Multi-scale lattice relaxation in general twisted trilayer graphenes
- Observation of Coexisting Dirac Bands and Moiré Flat Bands in Magic-Angle Twisted Trilayer Graphene
- TSTG II: Projected Hartree-Fock Study of Twisted Symmetric Trilayer Graphene
- Pair Density Waves from Local Band Geometry
- Stacking and gate tunable topological flat bands, gaps and anisotropic strip patterns in twisted trilayer graphene
- Magic angles in twisted bilayer graphene near commensuration: Towards a hypermagic regime
- Topological origin of flat-bands as pseudo-Landau levels in uniaxial strained graphene nanoribbons and induced magnetic ordering due to electron-electron interactions
- Helical trilayer graphene: a moiré platform for strongly-interacting topological bands
- Moire Band Structures of the Double twisted Few Layer Graphene
- Extended magic phase in twisted graphene multilayers
- Energetic stability and spatial inhomogeneity in the local electronic structure of relaxed twisted trilayer graphene
- Magic continuum in twisted bilayer square lattice with staggered flux
- Doubled Moiré Flat Bands in Double-twisted Few Layer Graphite
- -Nontrivial Moiré Minibands and Interaction-Driven Quantum Anomalous Hall Insulators in Topological Insulator Based Moiré Heterostructures
- Electric field-tunable layer polarization in graphene/boron nitride twisted quadrilayer superlattices
- A primer on twistronics: A massless Dirac fermion's journey to moiré patterns and flat bands in twisted bilayer graphene
- Nearly flat bands in twisted triple bilayer graphene
- Intrinsically-multilayer moiré heterostructures
- Helical trilayer graphene in magnetic field: Chern mosaic and higher Chern number ideal flat bands
- Moiré Band Engineering in Twisted Trilayer WSe2
- Tunneling in an anisotropic cubic Dirac semi-metal
- Moiré fractals in twisted graphene layers
- Electronic structure and transport in materials with flat bands: 2D materials and quasicrystals
- Network of chiral one-dimensional channels and localized states emerging in a moiré system
- Floquet Hofstadter butterfly in trilayer graphene with a twisted top layer
- Imaging supermoiré relaxation in helical trilayer graphene
- Topological Floquet Flat Bands in Irradiated Alternating Twist Multilayer Graphene
- Hofstadter-Moiré Butterfly in Twisted Trilayer Graphene
- Mean-field Modelling of Moiré Materials: A User's Guide with Selected Applications to Twisted Bilayer Graphene
- Giant Shear Displacement by Light-Induced Raman Force in Bilayer Graphene
- Striped twisted state in the orientational epitaxy on quasicrystals
- Energy Spectrum Theory of Incommensurate Systems
- Sliding-dependent electronic structures of alternating-twist tetralayer graphene
- Perpendicular electronic transport and moiré-induced resonance in twisted interfaces of three-dimensional graphite
- Induced superconductivity in magic-angle twisted trilayer graphene through graphene-metal contacts