Cylindrical vector beams of light from an electrically excited plasmonic lens

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Abstract

The production of cylindrical vector beams from a low-energy, electric, microscale light source is demonstrated both experimentally and theoretically. This is achieved by combining a "plasmonic lens"; with the ability to locally and electrically excite propagating surface plasmons on gold films. The plasmonic lens consists of concentric circular subwavelength slits that are etched in a thick gold film. The local excitation arises from the inelastic tunneling of electrons from the tip of a scanning tunneling microscope. We report on the emission of radially polarized beams with an angular divergence of less than ±4°.

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Cao, S., Le Moal, E., Boer-Duchemin, E., Dujardin, G., Drezet, A., & Huant, S. (2014). Cylindrical vector beams of light from an electrically excited plasmonic lens. Applied Physics Letters, 105(11). https://doi.org/10.1063/1.4895769

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