Magnetic Speckle-Pattern Rotation in Gyrotropic Low-Mode Optical Fiber Coated by Conductive Nanoshell

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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.

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207-210

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March 2016

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© 2016 Trans Tech Publications Ltd. All Rights Reserved

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[1] N.B. Baranova, and B.Y. Zel'dovich, Rotation of a ray by a magnetic field, JETP Lett., 59 (1994) 681-684.

Google Scholar

[2] M.Y. Darsht, I.V. Zhirgalova, Zel'dovich B.Y., and Kundikova N.D., Observation of a magnetic, rotation of the speckle of light passed through an optical fiber, JETP Lett., 59 (1994)763-763.

Google Scholar

[3] L.I. Ardasheva, M.O. Sadykova, N.R. Sadykov, V.E. Chernyakov, V.V. Anikeev, M.V. Bol'shakov, A.I. Valeev, V.S. Zinatulin, and N.D. Kundikova, Rotation of the speckle pattern in a low-mode optical fiber in a longitudinal magnetic field, J. Opt. Technol., 69 (2002).

DOI: 10.1364/jot.69.000451

Google Scholar

[4] L.I. Ardasheva, N.D. Kundikova, M.O. Sadykova, N.R. Sadykov, and V.E. Chernyakov, Speckle-Pattern Rotation in a Few-Mode Optical Fiber in a Longitudinal Magnetic Field, Opt. Spectrosc., 95 (2003) 645–651.

DOI: 10.1134/1.1621451

Google Scholar

[5] M.V. Bolshakov, A.V. Ershov, and N.D. Kundikova, Optical method for detecting variations of the magnetic field strength, Opt. Spectrosc., 110 (2011) 624–629.

DOI: 10.1134/s0030400x11040059

Google Scholar

[6] S.A. Mikhailov and K. Ziegler , New Electromagnetic Mode in Graphene, Phys. Rev. Lett., 99 (2007)016803.

Google Scholar

[7] Yu.V. Bludov, M.I. Vasilevskiy and N.M.R. Peres, Mechanism for graphene-based optoelectronic switches by tuning surface plasmon-polaritons in monolayer graphene, Europhys. Lett., 92 (2010) 68001.

DOI: 10.1209/0295-5075/92/68001

Google Scholar

[8] I.V. Iorsh, I.V. Shadrivov, P.A. Belov, Yu.S. Kivshar, Tunable hybrid surface waves supported by a graphene layer, JETP Lett., 97 (2013) 249-252.

DOI: 10.1134/s002136401305007x

Google Scholar

[9] I.V. Iorsh, I.S. Mukhin, I.V. Shadrivov, P.A. Belov and Yu.S. Kivshar, Hyperbolic metamaterials based on multilayer graphene structures, Phys. Rev. B, 87 (2013) 075416.

DOI: 10.1103/physrevb.88.039904

Google Scholar

[10] P.I. Buslaev, I.V. Iorsh, I.V. Shadrivov, P.A. Belov, Yu.S. Kivshar, Plasmons in waveguide structures formed by two graphene layers, JETP Let., 97 (2013) 535-539.

DOI: 10.1134/s0021364013090063

Google Scholar

[11] D.A. Kuzmin, I.V. Bychkov, V.G. Shavrov, Electromagnetic waves reflection, transmission and absorption by graphene-magnetic semiconductor-graphene sandwich-structure in magnetic field: Faraday geometry, Photon. Nanostruct. Fundam. Appl., 12 (2014).

DOI: 10.1016/j.photonics.2014.06.005

Google Scholar

[12] D.A. Kuzmin, I.V. Bychkov, V.G. Shavrov, Electromagnetic Waves Reflectance of Graphene - Magnetic Semiconductor Superlattice in Magnetic Field, IEEE Trans. Magn., 50 (2014) 2505004.

DOI: 10.1109/tmag.2014.2323332

Google Scholar

[13] D.A. Kuzmin, I.V. Bychkov, and V.G. Shavrov, Influence of graphene coating on speckle-pattern rotation of light in gyrotropic optical fiber, Opt. Lett., 40 (2015) 890-893.

DOI: 10.1364/ol.40.000890

Google Scholar

[14] G. W. Hanson, Dyadic Green's functions and guided surface waves for a surface conductivity model of graphene, Journ. Appl. Phys., 103 (2008) 064302.

DOI: 10.1063/1.4776680

Google Scholar