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Plasmonically induced magnetic field in graphene-coated nanowires
Kuzmin, Dmitry A.,Bychkov, Igor V.,Shavrov, Vladimir G.,Temnov, Vasily V.,Lee, Hyoung-In,Mok, Jinsik OPTICAL SOCIETY OF AMERICA 2016 Optics letters Vol.41 No.2
<P>In this Letter, we investigate a magnetic field induced by guiding plasmonic modes in graphene-coated nanowire via an inverse Faraday effect. Magnetic field distribution for different plasmonic modes has been calculated. It has been shown that a magnetic field has a vortex-like distribution for some plasmonic modes. The possibility of producing magnetic field distribution that rotates along the nanowire axis and periodically depends on azimuthal angle has been demonstrated. (C) 2016 Optical Society of America</P>
Bychkov, Igor V.,Kuzmin, Dmitry A.,Tolkachev, V.A.,Lee, Hyoung In,Shavrov, Vladimir G. Scientific.Net 2016 Materials Science Forum Vol. No.
<P>We have investigated theoretically the possibility of control of magnetic speckle-pattern rotation in gyrotropic optical fiber coated by conductive nanoshell. Investigation has been carried out for graphene and silver coated fibers. In graphene-coated fiber speckle-pattern rotation may be tuned by both magnetic field and chemical potential of graphene. It is shown that fiber coating by conductive nanoshell may leads to suppression of magnetic speckle-pattern rotation even for low-gyrotropic quartz fiber.</P>