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A bimetallic nanoantenna for directional colour routing

机译:用于定向色彩路由的双金属纳米天线

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Recent progress in nanophotonics includes demonstrations of meta-materials displaying negative refraction at optical frequencies, directional single photon sources, plasmonic analogies of electromagnetically induced transparency and spectacular Fano resonances. The physics behind these intriguing effects is to a large extent governed by the same single parameter—optical phase. Here we describe a nanophotonic structure built from pairs of closely spaced gold and silver disks that show phase accumulation through material-dependent plasmon resonances. The bimetallic dimers show exotic optical properties, in particular scattering of red and blue light in opposite directions, in spite of being as compact as ~λ3/100. These spectral and spatial photon-sorting nanodevices can be fabricated on a wafer scale and offer a versatile platform for manipulating optical response through polarization, choice of materials and geometrical parameters, thereby opening possibilities for a wide range of practical applications.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:纳米光子学的最新进展包括超材料的演示,这些超材料在光频率下显示负折射,定向单光子源,电磁感应透明性的等离激元类比和壮观的Fano共振。这些引人入胜的效果背后的物理学在很大程度上受同一单一参数-光学相位的支配。在这里,我们描述了一种纳米光子结构,该结构由成对的紧密间隔的金和银圆盘构成,这些圆盘通过依赖于材料的等离振子共振显示出相积累。尽管双金属二聚体的致密性约为〜λ3/ 100,但它们显示出奇特的光学特性,尤其是红色和蓝色光在相反方向上的散射。这些光谱和空间光子分选纳米器件可以晶圆级制造,并提供了一个通用平台,用于通过偏振,材料选择和几何参数来操纵光学响应,从而为广泛的实际应用开辟了可能性。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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