Confined magneto-optical waves in graphene
arXiv:1202.1666 · doi:10.1103/PhysRevB.85.205426
Abstract
The electromagnetic mode spectrum of single-layer graphene subjected to a quantizing magnetic field is computed taking into account intraband and interband contributions to the magneto-optical conductivity. We find that a sequence of weakly decaying quasi-transverse-electric modes, separated by magnetoplasmon polariton modes, emerge due to the quantizing magnetic field. The characteristics of these modes are tuneable, by changing the magnetic field or the Fermi energy.
9 pages, 7 figures. published version: text and figures revised and updated + new references and one figure added
References in corpus (8)
- The electronic properties of graphene
- A new electromagnetic mode in graphene
- Magneto-optical conductivity in Graphene
- Infrared nanoscopy of Dirac plasmons at the graphene-SiO2 interface
- Collective modes of doped graphene and a standard 2DEG in a strong magnetic field: linear magneto-plasmons versus magneto-excitons
- Magnetoplasmons in layered graphene structures
- Magnetoplasmons excitations in graphene for filling factors
- Magneto-optical conductivity in graphene including electron-phonon coupling
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- Four-wave Mixing of Topological Edge Plasmons in Graphene Metasurfaces
- Complete light absorption in graphene-metamaterial corrugated structures
- Magnetic-tunable nanoscale thermal radiation between twisted graphene gratings
- Active magneto-optical control of spontaneous emission in graphene
- Magnetically tunable multi-band near-field radiative heat transfer between two graphene sheets
- Ultrahigh refractive index sensitivity of TE-polarized electromagnetic waves in graphene at the interface between two dielectric media
- Tunable hybrid surface waves supported by a graphene layer
- Directional excitation of graphene surface plasmons
- Link between the photonic and electronic topological phases in artificial graphene
- Giant Thermal Magnetoresistance Driven by Graphene Magnetoplasmon
- Magnetoplasmon-surface phonon polaritons coupling effects in radiative heat transfer
- Polaritonic Quantum Matter
- Soft-boundary graphene nanoribbon formed by a graphene sheet above a perturbed ground plane: conductivity profile and SPP modal current distribution
- High Figure of Merit Magneto Optics from Interfacial Skyrmions on Topological Insulators
- Tuning resonance energy transfer with magneto-optical properties of graphene
- Magnetoplasmons in magic-angle twisted bilayer graphene
- Co-existing topological and Volkov-Pankratov plasmonic edge states in magnetized graphene
- Engineering plasmon modes and their loss in armchair graphene nanoribbons by selected edge-extended defects
- Tunable hyperbolic Landau-level polaritons in charge-neutral graphene nanoribbon metasurfaces
- Magneto-Plasmonics and Resonant Interaction of Light with Dynamic Magnetisation in Metallic and All-Dielectric Nanostructures (Review)