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Polarization-Independent Metasurface Lens Based on Binary Phase Fresnel Zone Plate

机译:基于二进制菲涅耳区板的偏振无关的元表面镜头

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摘要

Based on the binary phase Fresnel zone plate (FZP), a polarization-independent metasurface lens that is able to focus incident light with any polarization state, including circular, linear, and elliptical polarizations, has been proposed and investigated. We demonstrate that the metasurface lens consisting of metal subwavelength slits can operate in a wide bandwidth in the visible range, and has a higher focusing efficiency than that of an amplitude FZP lens without phase modulation. A multi-focus FZP metasurface lens has also been designed and investigated. The proposed lens can provide potential applications in integrated nanophotonic devices without polarization limitations.
机译:基于二进制相菲涅耳区板(FZP),已经提出并研究了能够用任何偏振状态聚焦入射光的偏振无关的元表面透镜,并研究了包括圆形,线性和椭圆形偏振。我们证明,由金属亚主波长狭缝组成的元表面透镜可以在可见范围内的宽带宽,并且具有比没有相位调制的幅度FZP透镜的聚焦效率更高。也设计并调查了多焦FZP元表面镜头。所提出的透镜可以在没有偏振限制的情况下提供集成的纳米光电装置中的潜在应用。

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