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. 2011 Sep 4;6(10):630-4.
doi: 10.1038/nnano.2011.146.

Graphene plasmonics for tunable terahertz metamaterials

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Graphene plasmonics for tunable terahertz metamaterials

Long Ju et al. Nat Nanotechnol. .

Abstract

Plasmons describe collective oscillations of electrons. They have a fundamental role in the dynamic responses of electron systems and form the basis of research into optical metamaterials. Plasmons of two-dimensional massless electrons, as present in graphene, show unusual behaviour that enables new tunable plasmonic metamaterials and, potentially, optoelectronic applications in the terahertz frequency range. Here we explore plasmon excitations in engineered graphene micro-ribbon arrays. We demonstrate that graphene plasmon resonances can be tuned over a broad terahertz frequency range by changing micro-ribbon width and in situ electrostatic doping. The ribbon width and carrier doping dependences of graphene plasmon frequency demonstrate power-law behaviour characteristic of two-dimensional massless Dirac electrons. The plasmon resonances have remarkably large oscillator strengths, resulting in prominent room-temperature optical absorption peaks. In comparison, plasmon absorption in a conventional two-dimensional electron gas was observed only at 4.2 K (refs 13, 14). The results represent a first look at light-plasmon coupling in graphene and point to potential graphene-based terahertz metamaterials.

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References

    1. Science. 2004 Mar 5;303(5663):1494-6 - PubMed
    1. J Phys Chem B. 2007 May 10;111(18):4854-9 - PubMed
    1. Nano Lett. 2011 Aug 10;11(8):3370-7 - PubMed
    1. Science. 2010 May 21;328(5981):999-1002 - PubMed
    1. Phys Rev Lett. 2010 Jan 22;104(3):036805 - PubMed

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