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Subwavelength-thick Lenses with High Numerical Apertures and Large Efficiency Based on High Contrast Transmitarrays

机译:基于高对比度透射阵列的高数值孔径和高效率的亚波长厚透镜

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摘要

Flat optical devices thinner than a wavelength promise to replace conventional free-space components for wavefront and polarization control. Transmissive flat lenses are particularly interesting for applications in imaging and on-chip optoelectronic integration. Several designs based on plasmonic metasurfaces, high-contrast transmitarrays and gratings have been recently implemented but have not provided a performance comparable to conventional curved lenses. Here we report polarization-insensitive, micron-thick, high-contrast transmitarray micro-lenses with focal spots as small as 0.57 λ. The measured focusing efficiency is up to 82%. A rigorous method for ultrathin lens design, and the trade-off between high efficiency and small spot size (or large numerical aperture) are discussed. The micro-lenses, composed of silicon nano-posts on glass, are fabricated in one lithographic step that could be performed with high-throughput photo or nanoimprint lithography, thus enabling widespread adoption.
机译:比波长更薄的平面光学器件有望取代传统的自由空间组件,用于波前和偏振控制。透射型平面透镜对于成像和片上光电集成中的应用特别有趣。最近已经实现了基于等离激元超表面,高对比度透射阵列和光栅的几种设计,但这些设计没有提供可与传统曲面透镜媲美的性能。在这里,我们报道了偏振不敏感,微米厚,高对比度的透射阵列微透镜,其焦点小至0.57λ。测得的聚焦效率高达82%。讨论了用于超薄镜片设计的严格方法,以及在高效率和小光斑尺寸(或大数值孔径)之间的权衡。由玻璃上的硅纳米柱组成的微透镜可以通过一个光刻步骤制造,该步骤可以通过高通量照片或纳米压印光刻来执行,因此能够被广泛采用。

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