Open AccessPhysicsMaterials Science

F. Javier Garcia de Abajo

2014.2.9ACS Photonics

DOI: 10.1021/ph400147y

Abstract

Graphene plasmons are rapidly emerging as a viable tool for fast electrical manipulation of light. The prospects for applications to electro-optical modulation, optical sensing, quantum plasmonics, light harvesting, spectral photometry, and tunable lighting at the nanoscale are further stimulated by the relatively low level of losses and high degree of spatial confinement that characterize these excitations compared with conventional plasmonic materials, alongside the large nonlinear response of graphene. We start with a general description of the plasmonic behavior of extended graphene, followed by analytical methods that lead to reasonably accurate estimates of both the plasmon energies and the strengths of coupling to external light in graphene nanostructures, including graphene ribbons. Although graphene plasmons have so far been observed at mid-infrared and longer wavelengths, there are several possible strategies to extend them toward the visible and near-infrared, including a reduction in the size ...

Citation format

ABAJO, F. Javier Garcia de. Graphene plasmonics: Challenges and opportunities [preprint]. arXiv, 2014. arXiv:1402.1969.