Publication | Open Access
Topologically protected edge states in graphene plasmonic crystals
37
Citations
31
References
2017
Year
Materials SciencePlasmonicsGraphene NanomeshesEngineeringTopological MaterialsPhysicsNanomaterialsNanotechnologyNanoelectronicsApplied PhysicsGrapheneGraphene Plasmonic CrystalsGraphene NanoribbonGraphene NanodisksPlasmonic CrystalNanophotonics
A two-dimensional graphene plasmonic crystal composed of periodically arranged graphene nanodisks is proposed. We show that the band topology effect due to inversion symmetry broken in the proposed plasmonic crystals is obtained by tuning the chemical potential of graphene nanodisks. Utilizing this kind of plasmonic crystal, we constructed N-shaped channels and realized topologically edged transmission within the band gap. Furthermore, topologically protected exterior boundary propagation, which is immune to backscattering, was also achieved by modifying the chemical potential of graphene nanodisks. The proposed graphene plasmonic crystals with ultracompact size are subject only to intrinsic material loss, which may find potential applications in the fields of topological plasmonics and high density nanophotonic integrated systems.
| Year | Citations | |
|---|---|---|
Page 1
Page 1