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Free-Electron Transparent Metasurfaces with Controllable Losses for Broadband Light Manipulation with Nanometer Resolution

机译:具有纳米损耗的可控损耗的自由电子透明超颖表面,具有可控制的损耗

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摘要

Controlling broadband light in nanoscale volumes is a desired goal in nanophotonics. Metastructures tackle this problem by subwavelength nanostructured patterns. The current technology reaches footprints of 50 nm with plasmonic nanostructures. Scaling down these values is challenging, especially in low loss dielectrics. Here, a new class of metasurfaces is introduced, "printed" point-to-point by free-electron waves and created by altering the resonant atomic transition of inexpensive photosensitive materials. With this approach it is possible to directly write a desired distribution of refractive index and extinction coefficient with a resolution equal to the focusing accuracy of the electron beam, theoretically limited to the single nanometer. An application of this technology is illustrated in structural coloration. Currently, the best results are obtained with plasmonics at 127 000 dual polarization interferometry (DPI), with 50-200 nm structures and chromaticity ranging from blue to yellow. Free-electron metasurfaces can generate the complete spectrum of colors of the cyan, yellow, magenta, and black system with resolutions up to 256 000 DPI, and nanostructures of 10 nm radius by using a single inexpensive layer of transparent material. This platform can enable a new generation of low cost transparent media supporting ultradense optical circuitry for broadband light control.
机译:在纳米光子学中,以纳米级体积控制宽带光是理想的目标。元结构通过亚波长纳米结构图案解决了这个问题。当前技术具有等离激元纳米结构的占地面积为50 nm。缩小这些值具有挑战性,特别是在低损耗电介质中。在这里,引入了一类新型的超颖表面,通过自由电子波点对点“打印”,并通过改变廉价感光材料的共振原子跃迁来创建。使用这种方法,可以直接写入所需的折射率和消光系数分布,其分辨率等于电子束的聚焦精度,理论上限于单个纳米。在结构着色中说明了该技术的应用。目前,用等离子波在127 000双极化干涉仪(DPI)上可获得最佳结果,其结构为50-200 nm,色度从蓝色到黄色。自由电子超表面可以通过使用便宜的单层透明材料来生成青色,黄色,品红色和黑色系统的完整光谱,分辨率高达256 000 DPI,半径为10 nm的纳米结构。该平台可支持新一代低成本透明介质,支持用于宽带光控制的超密集光学电路。

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