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Published on: February 2, 2012
Giant Faraday Rotation of High-Order Plasmonic Modes in Graphene-Covered Nanowires
Dmitry A Kuzmin1,2, Igor V Bychkov1,2, Vladimir G Shavrov3
1Department of Radio-Physics and Electronics, Chelyabinsk State University , Br. Kashirinykh Street 129, 454001 Chelyabinsk, Russian Federation.
Abstract:
Plasmonic Faraday rotation in nanowires manifests itself in the rotation of the spatial intensity distribution of high-order surface plasmon polariton (SPP) modes around the nanowire axis. Here we predict theoretically the giant Faraday rotation for SPPs propagating on graphene-coated magneto-optically active nanowires. Upon the reversal of the external magnetic field pointing along the nanowire axis some high-order plasmonic modes may be rotated by up to ∼100° on the length scale of about 500 nm at mid-infrared frequencies. Tuning the carrier concentration in graphene by chemical doping or gate voltage allows for controlling SPP-properties and notably the rotation angle of high-order azimuthal modes. Our results open the door to novel plasmonic applications ranging from nanowire-based Faraday isolators to the magnetic control in quantum-optical applications.

