New Dirac points and multiple Landau level crossings in biased trilayer graphene
arXiv:1212.6251 · doi:10.1103/PhysRevB.87.115422
Abstract
Recently a new high-mobility Dirac material, trilayer graphene, was realized experimentally. The band structure of ABA-stacked trilayer graphene consists of a monolayer-like and a bilayer-like pairs of bands. Here we study electronic properties of ABA-stacked trilayer graphene biased by a perpendicular electric field. We find that the combination of the bias and trigonal warping gives rise to a set of new Dirac points: in each valley, seven species of Dirac fermions with small masses of order of a few meV emerge. The positions and masses of the emergent Dirac fermions are tunable by bias, and one group of Dirac fermions becomes massless at a certain bias value. Therefore, in contrast to bilayer graphene, the conductivity at the neutrality point is expected to show non-monotonic behavior, becoming of the order of a few e^2/h when some Dirac masses vanish. Further, we analyze the evolution of Landau level spectrum as a function of bias. Emergence of new Dirac points in the band structure translates into new three-fold-degenerate groups of Landau levels. This leads to an anomalous quantum Hall effect, in which some quantum Hall steps have a height of 3e^2/h. At an intermediate bias, the degeneracies of all Landau levels get lifted, and in this regime all quantum Hall plateaus are spaced by e^2/h. Finally, we show that the pattern of Landau level crossings is very sensitive to certain band structure parameters, and can therefore provide a useful tool for determining their precise values.
11 pages, 6 figures; v2: expanded introduction, new references added, a few typos corrected
References in corpus (17)
- The electronic properties of graphene
- Biased bilayer graphene: semiconductor with a gap tunable by electric field effect
- Gate-induced insulating state in bilayer graphene devices
- Quantum Hall Ferromagnetism in Graphene
- Electronic states and Landau levels in graphene stacks
- Ab Initio Theory of Gate Induced Gaps in Graphene Bilayers
- Spin Filtered Edge States and Quantum Hall Effect in Graphene
- Band Structure of ABC-Stacked Graphene Trilayers
- Dependence of band structures on stacking and field in layered graphene
- Quantum Hall effect and Landau level crossing of Dirac fermions in trilayer graphene
- Orbital diamagnetism in multilayer graphenes: Systematic study with the effective mass approximation
- Magneto-optical properties of multilayer graphenes
- Electron interactions in graphene in a strong magnetic field
- Gate-induced interlayer asymmetry in ABA-stacked trilayer graphene
- Transport studies of dual-gated ABC and ABA trilayer graphene: band gap opening and band structure tuning in very large perpendicular electric field
- Quantum and classical confinement of resonant states in a trilayer graphene Fabry-Perot interferometer
- Gate-induced Dirac cones in multilayer graphenes
Cited by in corpus (15)
- Half and quarter metals in rhombohedral trilayer graphene
- Imaging de Haas-van Alphen quantum oscillations and milli-Tesla pseudomagnetic fields
- Landau level splittings, phase transitions, and non-uniform charge distribution in trilayer graphene
- Tunable symmetries of integer and fractional quantum Hall phases in heterostructures with multiple Dirac bands
- Universality of Quantum Phase Transitions in the Integer and Fractional Quantum Hall Regimes
- Inter-subband Landau level couplings induced by in-plane magnetic fields in trilayer graphene
- Spontaneous Gully Polarized Quantum Hall States in ABA Trilayer Graphene
- Deep learning extraction of band structure parameters from density of states: a case study on trilayer graphene
- Distinguishing viscous, ballistic, and diffusive current flows in anisotropic metals
- Hofstadter-Moiré Butterfly in Twisted Trilayer Graphene
- Tunable Band Inversion in Trilayer Graphene
- Magnetoconductance Oscillations in Electron-hole Hybridization Gaps and Valley Splittings in Tetralayer Graphene
- Magnetic quantization in multilayer graphenes
- Correlated interlayer quantum Hall state in large-angle twisted trilayer graphene
- Even-denominator fractional quantum Hall states in the zeroth Landau level of ABA trilayer graphene