Superradiance mediated by Graphene Surface Plasmons
arXiv:1201.6492 · doi:10.1103/PhysRevB.85.155438
Abstract
We demonstrate that the interaction between two emitters can be controlled by means of the efficient excitation of surface plasmon modes in graphene. We consider graphene surface plasmons supported by either two-dimensional graphene sheets or one-dimensional graphene ribbons, showing in both cases that the coupling between the emitters can be strongly enhanced or suppressed. The super- and subradiant regimes are investigated in the reflection and transmission configurations. Importantly, the length scale of the coupling between emitters, which in vacuum is fixed by the free space wavelength, is now determined by the wavelength of the graphene surface plasmons that can be extremely short and be tuned at will via a gate voltage.
References in corpus (8)
- The electronic properties of graphene
- Dyadic Green's Functions and Guided Surface Waves for a Surface Conductivity Model of Graphene
- Dielectric function, screening, and plasmons in 2D graphene
- Carrier transport in 2D graphene layers
- Dynamical polarization of graphene at finite doping
- Infrared nanoscopy of Dirac plasmons at the graphene-SiO2 interface
- Entanglement of two qubits mediated by one-dimensional plasmonic waveguides
- Thermo-Plasma Polariton within Scaling Theory of Single-Layer Graphene
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