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Generation of wavelength-independent subwavelength Bessel beams using metasurfaces

机译:使用超颖表面生成与波长无关的亚波长贝塞尔光束

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摘要

Bessel beams are of great interest due to their unique non-diffractive properties. Using a conical prism or an objective paired with an annular aperture are two typical approaches for generating zeroth-order Bessel beams. However, the former approach has a limited numerical aperture (NA), and the latter suffers from low efficiency, as most of the incident light is blocked by the aperture. Furthermore, an additional phase-modulating element is needed to generate higher-order Bessel beams, which in turn adds complexity and bulkiness to the system. We overcome these problems using dielectric metasurfaces to realize meta-axicons with additional functionalities not achievable with conventional means. We demonstrate meta-axicons with high NA up to 0.9 capable of generating Bessel beams with full width at half maximum about as small as ~λ/3 (λ=405 nm). Importantly, these Bessel beams have transverse intensity profiles independent of wavelength across the visible spectrum. These meta-axicons can enable advanced research and applications related to Bessel beams, such as laser fabrication, imaging and optical manipulation.
机译:贝塞尔光束因其独特的非衍射特性而备受关注。使用锥形棱镜或与环形孔径成对的物镜是产生零阶贝塞尔光束的两种典型方法。但是,前一种方法的数值孔径(NA)有限,而后者的效率较低,因为大部分入射光都被该孔径所阻挡。此外,需要一个附加的调相元件来产生更高阶的贝塞尔光束,这反过来又增加了系统的复杂性和体积。我们使用介电超表面克服了这些问题,以实现具有常规功能无法实现的附加功能的元轴锥。我们演示了具有高达0.9的高NA的元轴象素,能够生成具有一半左右的全宽度的Bessel光束,其最小宽度约为〜λ/ 3(λ= 405 nm)。重要的是,这些贝塞尔光束的横向强度分布与可见光谱范围内的波长无关。这些元轴可以实现与贝塞尔光束有关的高级研究和应用,例如激光制造,成像和光学操纵。

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