We theoretically investigate the generation of far-field propagating optical beams with a desired orbital angular momentum by using an archetypical magnetoplasmonic tip surrounded by a gold spiral slit. The use of a magnetic material can lead to important implications once magneto-optical activity is activated through the application of an external magnetic field. The physical model and the numerical study presented here introduce the concept of magnetically tunable plasmonic vortex lens, namely a magnetoplasmonic vortex lens, which ensures a tunable selectivity in the polarization state of the generated nanostructured beam. The presented system provides a promising platform for a localized excitation of plasmonic vortices followed by their beaming in the far-field with an active modulation of both light's transmission and helicity. Published by AIP Publishing.

Magnetoplasmonic control of plasmonic vortices / Maccaferri, N; Gorodetski, Y; Toma, A; Zilio, P; De Angelis, F; Garoli, D. - In: APPLIED PHYSICS LETTERS. - ISSN 0003-6951. - 111:20(2017). [10.1063/1.5001327]

Magnetoplasmonic control of plasmonic vortices

Garoli D
2017

Abstract

We theoretically investigate the generation of far-field propagating optical beams with a desired orbital angular momentum by using an archetypical magnetoplasmonic tip surrounded by a gold spiral slit. The use of a magnetic material can lead to important implications once magneto-optical activity is activated through the application of an external magnetic field. The physical model and the numerical study presented here introduce the concept of magnetically tunable plasmonic vortex lens, namely a magnetoplasmonic vortex lens, which ensures a tunable selectivity in the polarization state of the generated nanostructured beam. The presented system provides a promising platform for a localized excitation of plasmonic vortices followed by their beaming in the far-field with an active modulation of both light's transmission and helicity. Published by AIP Publishing.
2017
111
20
Magnetoplasmonic control of plasmonic vortices / Maccaferri, N; Gorodetski, Y; Toma, A; Zilio, P; De Angelis, F; Garoli, D. - In: APPLIED PHYSICS LETTERS. - ISSN 0003-6951. - 111:20(2017). [10.1063/1.5001327]
Maccaferri, N; Gorodetski, Y; Toma, A; Zilio, P; De Angelis, F; Garoli, D
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1315970
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