Fields radiated by a nanoemitter in a graphene sheet
arXiv:1104.3558 · doi:10.1103/PhysRevB.84.195446
Abstract
The extraordinary properties of graphene make it a very promising material for use in optoelectronics. However, this is still a nascent field, where some basic properties of the electromagnetic field in graphene must be explored. Here we report on the fields radiated by a nanoemitter lying on a graphene sheet. Our results show that this field presents a rich dependence on both frequency, distance to the source and dipole orientation. This behavior is attributed to distinct peculiarities on the density of electromagnetic states in the graphene sheet and the interaction between them. The field is mainly composed of an core region of high-intensity electromagnetic field, dominated by surface plasmons, and an outer region where the field is practically the same it would be for an emitter in vacuum. Within the core region, the intensity of the electric field is several orders of magnitude larger than what it would be in vacuum. Importantly, the size of this core region can be controlled thorough external gates, which opens up many interesting applications in, for instance, surface optics and spectroscopy. Additionally, the large coupling between nanoemitters and surface plasmons makes graphene sheets a propitious stage for quantum-optics, in which the interaction between quantum objects could be externally tailored at will.
References in corpus (10)
- The electronic properties of graphene
- Dyadic Green's Functions and Guided Surface Waves for a Surface Conductivity Model of Graphene
- Graphene plasmonics: A platform for strong light-matter interaction
- Making graphene visible
- Dielectric function, screening, and plasmons in 2D graphene
- Dynamical polarization of graphene at finite doping
- A new electromagnetic mode in graphene
- Rayleigh Imaging of Graphene and Graphene Layers
- Thermo-Plasma Polariton within Scaling Theory of Single-Layer Graphene
- Mechanism for graphene-based optoelectronic switches by tuning surface plasmon-polaritons in monolayer graphene
Cited by in corpus (62)
- Polaritons in layered 2D materials
- A perfect absorber made of a graphene micro-ribbon metamaterial
- Surface plasmon enhanced absorption and suppressed transmission in periodic arrays of graphene ribbons
- Plasmons in graphene: Recent progress and applications
- A Primer on Surface Plasmon-Polaritons in Graphene
- Novel effects of strains in graphene and other two dimensional materials
- Ultra-confined acoustic THz graphene plasmons revealed by photocurrent nanoscopy
- Novel hyperbolic metamaterials based on multilayer graphene structures
- Intrinsic Terahertz Plasmons and Magnetoplasmons in Large Scale Monolayer Graphene
- Broadband Nonreciprocal Amplification in Luminal Metamaterials
- Multiple Excitation of Confined Graphene Plasmons by Single Free Electrons
- Electrical Control of Optical Emitter Relaxation Pathways enabled by Graphene
- Anomalous Reflection Phase of Graphene Plasmons and its Influence on Resonators
- Plasmons and near-field amplification in double-layer graphene
- Superradiance mediated by Graphene Surface Plasmons
- Longitudinal and spin/valley Hall optical conductivity in single layer
- Intrinsic plasmons in 2D Dirac materials
- Extraordinary localization of TE-waves at the graphene layer
- Efficient coupling of light to graphene plasmons by compressing surface polaritons with tapered bulk materials
- Broadband Tunable THz Absorption with Singular Graphene Metasurfaces
- Strong plasmon reflection at nanometer-size gaps in monolayer graphene on SiC
- Plasmons in layered structures including graphene
- Scattering of Graphene plasmons by defects in the graphene sheet
- Ultra-Efficient Coupling of a Quantum Emitter to the Tunable Guided Plasmons of a Carbon Nanotube
- A planar hyperlens based on a modulated graphene monolayer
- Acoustic Graphene Plasmon Nanoresonators for Field Enhanced Infrared Molecular Spectroscopy
- Analytical solution for the diffraction of an electromagnetic wave by a graphene grating
- Harnessing vacuum forces for quantum sensing of graphene motion
- Multilayer graphene waveguides
- Tunable hybrid surface waves supported by a graphene layer
- Nonequilibrium plasmons with gain in graphene
- Tunable pseudo-magnetic fields for polaritons in strained metasurfaces
- Graphene, plasmons and transformation optics
- Surface plasmons at the interface between graphene and kerr-type nonlinear medium
- Long-range plasmon-assisted energy transfer over doped graphene
- Nonlinear atom-plasmon interactions enabled by nanostructured graphene
- Hybrid plasmon-magnon polaritons in graphene-antiferromagnet heterostructures
- Dipole excitation of surface plasmon on a conducting sheet: finite element approximation and validation
- Dynamical Tuning of Energy Transfer Efficiency on a Graphene Monolayer
- Localized plasmons in bilayer graphene nanodisks
- Direct Nano-Imaging of Light-Matter Interactions in Nanoscale Excitonic Emitters
- Scattering of electromagnetic waves from a graphene-coated thin cylinder of left-handed metamaterial
- Impact of graphene on the polarizability of a neighbour nanoparticle: a dyadic Green's function study
- Electromagnetic waves reflection, transmission and absorption by graphene - magnetic semiconductor - graphene sandwich-structure in magnetic field: Faraday geometry
- Spatial modulation of the electromagnetic energy transfer by excitation of graphene waveguide surface plasmons
- Plasmons in graphene on uniaxial substrates
- Hidden symmetries in plasmonic gratings
- Excitation of localized graphene plasmons by a metallic slit
- Directional Generation of Graphene Plasmons by Near Field Interference
- Exciton-plasmaritons in graphene-semiconductor structures
- Surface plasmon-polaritons in graphene, embedded into medium with gain and losses
- Plasmon generation through electron tunneling in twisted double-layer graphene and metal-insulator-graphene systems
- Single-Photon Pulse Induced Transient Entanglement Force
- On solutions of Maxwell's equations with dipole sources over a thin conducting film
- Analytical expressions for the Electromagnetic Dyadic Green's Function in Graphene and thin layers
- Magnetic-field-assisted transmission of THz waves through a graphene layer combined with a periodically perforated metallic film
- Determining graphene's induced band gap with magnetic and electric emitters
- Quantum Internal Structure of Plasmons
- Hyperbolic phonon-plasmon polaritons in a hBN-graphene van der Waals structure
- Toward Monoatomic-Layer Field Confinement Limit via Acoustic Graphene Plasmons
- Plasmonic Transverse Dipole Moment in Chiral Fermion Nanowires
- Dielectric properties of graphene on transition metal dichalcogenide substrate