Abstract
© 2015 Optical Society of America. Passive optical elements can play key roles in photonic applications such as plasmonic integrated circuits. Here we experimentally demonstrate passive gap-plasmon focusing and routing in two-dimensions. This is accomplished using a high numerical-aperture metal-dielectric-metal lens incorporated into a planar-waveguide device. Fabrication via metal sputtering, oxide deposition, electron- and focused-ion-beam lithography, and argon ion-milling is reported on in detail. Diffraction-limited focusing is optically characterized by sampling out-coupled light with a microscope. The measured focal distance and full-width-half-maximum spot size agree well with the calculated lens performance. The surface plasmon polariton propagation length is measured by sampling light from multiple out-coupler slits.
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CITATION STYLE
Dennis, B. S., Czaplewski, D. A., Haftel, M. I., Lopez, D., Blumberg, G., & Aksyuk, V. (2015). Diffraction limited focusing and routing of gap plasmons by a metal-dielectric-metal lens. Optics Express, 23(17), 21899. https://doi.org/10.1364/oe.23.021899
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