Propagation and attenuation properties of modes supported by graphene nano-ribbons placed on top of a grounded dielectric substrate are investigated by means of a spectral-domain Method-of-Moments approach together with a dyadic description of the graphene conductivity obtained based on semiclassical and quantum-mechanical arguments. Such a description takes into account the possible presence of static biasing fields or spatial-dispersion effects. The attenuation features are investigated and are compared to those of similar metal structures.
Propagation of surface plasmon polaritons on graphene nano-interconnects / Araneo, Rodolfo; Lovat, Giampiero; Celozzi, Salvatore; Burghignoli, Paolo; Hanson, G. W.. - STAMPA. - (2016), pp. 1-4. (Intervento presentato al convegno 20th IEEE Workshop on Signal and Power Integrity, SPI 2016 tenutosi a TARHOTEL MAJESTIC Corso Vittorio Emanuele II, 54, Turin, Italy nel 2016) [10.1109/SaPIW.2016.7496280].
Propagation of surface plasmon polaritons on graphene nano-interconnects
ARANEO, Rodolfo;LOVAT, GIAMPIERO;CELOZZI, Salvatore;BURGHIGNOLI, Paolo;
2016
Abstract
Propagation and attenuation properties of modes supported by graphene nano-ribbons placed on top of a grounded dielectric substrate are investigated by means of a spectral-domain Method-of-Moments approach together with a dyadic description of the graphene conductivity obtained based on semiclassical and quantum-mechanical arguments. Such a description takes into account the possible presence of static biasing fields or spatial-dispersion effects. The attenuation features are investigated and are compared to those of similar metal structures.File | Dimensione | Formato | |
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