Electronic properties of graphene hexagonal boron nitride moiré superlattice
arXiv:1406.0668 · doi:10.1103/PhysRevB.90.155406
Abstract
We theoretically investigate the electronic structures of moiré superlattices arising in monolayer / bilayer graphene stacked on hexagonal boron nitride (hBN) in presence and absence of magnetic field. We develop an effective continuum model from a microscopic tight-binding lattice Hamiltonian, and calculate the electronic structures of graphene-hBN systems with different rotation angles. Using the effective model, we explain the characteristic band properties such as the gap opening at the corners of the superlattice Brillouin zone (mini-Dirac point). We also investigate the energy spectrum and quantum Hall effect of graphene-hBN systems in uniform magnetic field and demonstrate the evolution of the fractal spectrum as a function of the magnetic field. The spectrum generally splits in the valley degrees of freedom ( and ) due to the lack of the inversion symmetry, and the valley splitting is more significant in bilayer graphene on hBN than in monolayer graphene on hBN because of the stronger inversion-symmetry breaking in bilayer.
14 pages, 10 figures
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Cited by in corpus (32)
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- Band structure and topological property of twisted double bilayer graphenes
- High-temperature quantum oscillations caused by recurring Bloch states in graphene superlattices
- Interlayer interaction in general incommensurate atomic layers
- Twist-angle dependence of the proximity spin-orbit coupling in graphene on transition-metal dichalcogenides
- New generation of moiré superlattices in doubly aligned hBN/graphene/hBN heterostructures
- Quasicrystalline electronic states in 30 rotated twisted bilayer graphene
- Moiré Commensurability and the Quantum Anomalous Hall Effect in Twisted Bilayer Graphene on Hexagonal Boron Nitride
- Double moiré with a twist: super-moiré in encapsulated graphene
- Incommensurate double-walled carbon nanotubes as one-dimensional moiré crystals
- Flat bands, strains, and charge distribution in twisted-bilayer hBN
- Fabry-Pérot resonances in a graphene/hBN Moiré superlattice
- Mass inversion in graphene by proximity to dichalcogenide monolayer
- Transport and particle-hole asymmetry in graphene on boron nitride
- Topological charge pumping by sliding moiré pattern
- Magnetic ratchet effect in bilayer graphene
- Edge modes and non local conductance in graphene superlattices
- Moiré edge states in twisted bilayer graphene and their topological relation to quantum pumping
- Accurate Measurement of the Gap of Graphene/hBN Moiré Superlattice through Photocurrent Spectroscopy
- Electronic structure of transferred graphene/h-BN van der Waals heterostructures with nonzero stacking angles by nano-ARPES
- Negative Differential Resistance in Graphene Boron Nitride Heterostructure Controlled by Twist and Phonon-Scattering
- Electric field-tunable layer polarization in graphene/boron nitride twisted quadrilayer superlattices
- Moiré effects in graphene--hBN heterostructures
- Orbitally controlled quantum Hall states in decoupled two-bilayer graphene sheets
- Enhanced valley polarization of graphene on hBN under circularly polarized light irradiation
- Dynamic Bandstructure and Capacitance Effects in Scanning Tunneling Spectroscopy of Bilayer Graphene
- Finger-gate manipulated quantum transport in Dirac materials
- Moiré patterns and inversion boundaries in graphene/hexagonal boron nitride bilayers
- Magnetic ordering tendencies in hexagonal boron nitride-bilayer graphene moiré structures
- Unconventional satellite resistance peaks in moiré superlattice of h-BN/ AB-stacked tetralayer-graphene heterostructure
- Paramagnetic singularities of the orbital magnetism in graphene with a moiré potential
- Electron-hole Hybridization in Bilayer Graphene