Extraordinary localization of TE-waves at the graphene layer
arXiv:1307.8288 · doi:10.1103/PhysRevB.89.035406
Abstract
The propagation of electromagnetic waves along the surface of a nonlinear dielectric covered by a graphene layer is investigated. The main result is that such a surface can support and stabilize nonlinear transverse electric (TE) plasmon polaritons. We demonstrated that these nonlinear TE modes have a subwavelength localization in the direction perpendicular to the surface, with the intensity much higher than that of the incident wave which excites the polariton.
6 pages, 5 figures
References in corpus (6)
- Graphene plasmonics
- A new electromagnetic mode in graphene
- Plasmons in graphene: Recent progress and applications
- A Primer on Surface Plasmon-Polaritons in Graphene
- Graphene supports the propagation of subwavelength optical solitons
- Unusual reflection of electromagnetic radiation from a stack of graphene layers at oblique incidence
Cited by in corpus (5)
- Tunable deep-subwavelength superscattering using graphene monolayers
- TM-polarized Surface Plasmon Polaritons in Nonlinear Multi-layer Graphene-Based Waveguides: An Analytical Study
- Extended frequency range of transverse-electric surface plasmon polaritons in graphene
- Unconventional electromagnetic properties of the graphene quantum dots
- Nonperturbative nonlinear effects in the dispersion relations for TE and TM plasmons on two-dimensional materials