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Metalenses Based on Symmetric Slab Waveguide and c-TiO2: Efficient Polarization-Insensitive Focusing at Visible Wavelengths

机译:基于对称板波导的金属和C-TiO2:可见波长下的高效极化不敏感聚焦

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摘要

A key goal of metalens research is to achieve wavefront shaping of light using optical elements with thicknesses on the order of the wavelength. Here we demonstrate ultrathin highly efficient crystalline titanium dioxide metalenses at blue, green, and red wavelengths (λ0 = 453 nm, 532 nm, and 633 nm, respectively) based on symmetric slab waveguide theory. These metalenses are less than 488 nm-thick and capable of focusing incident light into very symmetric diffraction-limited spots with strehl ratio and efficiency as high as 0.96 and 83%, respectively. Further quantitative characterizations about metalenses’ peak focusing intensities and focal spot sizes show good agreement with theoretical calculation. Besides, the metalenses suffer only about 10% chromatic deviation from the ideal spots in visible spectrum. In contrast with Pancharatnam–Berry phase mechanism, which limit their incident light at circular polarization, the proposed method enables metalenses polarization-insensitive to incident light.
机译:Metalens Research的一个关键目标是使用光学元件在波长的顺序上实现光的光线形状光。在这里,我们基于对称板波导理论,在蓝色,绿色和红色波长(λ0= 453nm,532nm和633nm,533nm,533nm,533nm)上证明超薄的超高效晶钛金属纤维。这些金属纤维小于488nm厚,并且能够将入射光聚焦到非常对称的衍射限制限制的斑点,其分别具有高达0.96和83%的效率。关于金属峰值集中强度和焦点尺寸的进一步定量表征展示了与理论计算的良好一致性。此外,金属纤维在可见光谱中的理想斑点中仅遭受约10%的色偏差。与PANCHARATNAM-BERRY相位机制相比,这限制了它们在圆极化下的入射光,所提出的方法使得对入射光的偏振不敏感。

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