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Graphene Plasmonics: A Platform for Strong Light–Matter Interactions

Nano Letters · 2011 · Vol. 11(8) · pp. 3370–3377
Frank H. L. KoppensDarrick E. ChangF. Javier Garcı́a de Abajo

Abstract

Graphene plasmons provide a suitable alternative to noble-metal plasmons because they exhibit much tighter confinement and relatively long propagation distances, with the advantage of being highly tunable via electrostatic gating. Here, we propose to use graphene plasmons as a platform for strongly enhanced light-matter interactions. Specifically, we predict unprecedented high decay rates of quantum emitters in the proximity of a carbon sheet, observable vacuum Rabi splittings, and extinction cross sections exceeding the geometrical area in graphene nanoribbons and nanodisks. Our theoretical results provide the basis for the emerging and potentially far-reaching field of graphene plasmonics, offering an ideal platform for cavity quantum electrodynamics, and supporting the possibility of single-molecule, single-plasmon devices.

Funding

  • Engineering and Physical Sciences Research Council
Citations
2,627
FWCI
109.34
field-weighted impact
References
61
Percentile
100%
vs. same field & year
Citations per year
References
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Nature Materials · 2010 · 8,191 citations
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Nature Materials · 2007 · 39,026 citations
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