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Graphene Plasmonics for Terahertz to Mid-Infrared Applications

ACS Nano · 2014 · Vol. 8(2) · pp. 1086–1101

Abstract

In recent years, we have seen a rapid progress in the field of graphene plasmonics, motivated by graphene's unique electrical and optical properties, tunability, long-lived collective excitation and its extreme light confinement. Here, we review the basic properties of graphene plasmons: their energy dispersion, localization and propagation, plasmon-phonon hybridization, lifetimes and damping pathways. The application space of graphene plasmonics lies in the technologically significant, but relatively unexploited terahertz to mid-infrared regime. We discuss emerging and potential applications, such as modulators, notch filters, polarizers, mid-infrared photodetectors, and mid-infrared vibrational spectroscopy, among many others.

Plasmonic and Surface Plasmon ResearchThermal Radiation and Cooling TechnologiesPhotonic and Optical DevicesGraphenePlasmonTerahertz radiationInfraredMaterials scienceOptoelectronicsPolarizerPhononNanotechnologyOptics
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References
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