Magnetoplasmons in layered graphene structures
arXiv:0808.3128 · doi:10.1103/PhysRevB.78.085401
Abstract
We calculate the dispersion equations for magnetoplasmons in a single layer, a pair of parallel layers, a graphite bilayer and a superlattice of graphene layers in a perpendicular magnetic field. We demonstrate the feasibility of a drift-induced instability of magnetoplasmons. The magnetoplasmon instability in a superlattice is enhanced compared to a single graphene layer. The energies of the unstable magnetoplasmons could be in the terahertz (THz) part of the electromagnetic spectrum. The enhanced instability makes superlattice graphene a potential source of THz radiation.
5 pages, 4 figures
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Cited by in corpus (14)
- Collective modes of doped graphene and a standard 2DEG in a strong magnetic field: linear magneto-plasmons versus magneto-excitons
- Dynamical polarization of monolayer graphene in a magnetic field
- Formation of p-n junction in polymer electrolyte-top gated bilayer graphene transistor
- Many-body effects of Coulomb interaction on Landau levels in graphene
- Combined Effect of Stacking and Magnetic Field on Plasmon Excitations in Bilayer Graphene
- Quasiparticles for quantum dot array in graphene and the associated Magnetoplasmons
- Effective Medium Model for Graphene Superlattices with Electrostatic and Magnetic Vector Potentials
- Magnetoplasmons in magic-angle twisted bilayer graphene
- Plasmons in Z2 Topological Insulators
- On the Dispersion Relation of Magnetoplasmons in a Planar Graphene-Based Superlattice
- Beating oscillations of magneto-optical spectra in simple hexagonal graphite
- Influence of Dynamical Floquet Spectrum on the Plasmon Excitations and Exchange Energy of tilted monolayer 1TMoS
- Optical N-plasmon: Topological hydrodynamic excitations in Graphene from repulsive Hall viscosity
- Disorder and Interactions in Graphene and other Quantum Systems