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Polarization independent high transmission large numerical aperture laser beam focusing and deflection by dielectric Huygens’ metasurfaces

机译:偏振独立高传输大型数值孔径激光束聚焦和偏转介质Huygens的Metasurfaces

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摘要

In this letter, we propose all-dielectric Huygens' metasurface structures to construct high numerical aperture flat lenses and beam deflecting devices. The designed metasurface consists of two-dimensional array of all dielectric nanodisk resonators with spatially varying radii, thereby introducing judiciously designed phase shift to the propagating light. Owing to the overlap of Mie-type magnetic and electric resonances, high transmission was achieved with rigorous design analysis. The designed flat lenses have numerical aperture value of 0.85 and transmission values around 80%. It also offers easy fabrication and compatibility with available semiconductor technology. This spectrally and physically scalable, versatile design could implement efficient wavefront manipulation or beam shaping for high power laser beams, as well as various optical microscopy applications without requiring plasmonic structures that are susceptible to ohmic loss of metals and sensitive to the polarization of light.
机译:在这封信中,我们提出了全电介质Huygens的Metasurface结构,以构造高数数字孔径平面透镜和梁偏转装置。设计的元表面由具有空间变化的半径的所有电介质纳米磁仓谐振器的二维阵列组成,从而将明智地设计的相移引入到传播光。由于MIE型磁力和电谐振重叠,通过严格的设计分析实现了高传输。设计的扁平镜片具有0.85的数值孔径值,传输值约为80%。它还提供简单的制造和可用半导体技术的兼容性。这种光谱和物理可伸缩的通用设计可以实现高功率激光束的有效波前操作或光束成形,以及各种光学显微镜应用,而不需要易受欧姆金属损失的等离子体结构和对光的偏振敏感的。

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