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利用金属-电介质-金属透镜实现间隙等离激元的衍射极限聚焦与路由

Diffraction limited focusing and routing of gap plasmons by a metal-dielectric-metal lens.

作者信息

Dennis Brian S, Czaplewski David A, Haftel Michael I, Lopez Daniel, Blumberg Girsh, Aksyuk Vladimir

出版信息

Opt Express. 2015 Aug 24;23(17):21899-908. doi: 10.1364/OE.23.021899.

Abstract

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.

摘要

无源光学元件在诸如等离子体集成电路等光子应用中可发挥关键作用。在此,我们通过实验证明了二维中的无源间隙等离子体聚焦和路由。这是通过将高数值孔径的金属 - 介质 - 金属透镜集成到平面波导装置中来实现的。详细报道了通过金属溅射、氧化物沉积、电子束和聚焦离子束光刻以及氩离子铣削进行的制造过程。通过用显微镜对出射耦合光进行采样,对衍射极限聚焦进行了光学表征。测量得到的焦距和半高宽光斑尺寸与计算得到的透镜性能吻合良好。通过对来自多个出射耦合器狭缝的光进行采样来测量表面等离激元极化激元的传播长度。

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