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通过优化多波长函数实现亚衍射聚焦的消色差超振荡超表面。

Achromatic super-oscillatory metasurface through optimized multiwavelength functions for sub-diffraction focusing.

作者信息

Chen Long, Liu Jia, Zhang Xiaohu, Tang Dongliang

出版信息

Opt Lett. 2020 Oct 15;45(20):5772-5775. doi: 10.1364/OL.404764.

Abstract

Optical super-oscillatory lenses based on planar micro/nano structures have been demonstrated as promising alternatives for shaping wavefronts of light and realizing super-resolution images in a NA-limited optical system. However, as the super-oscillatory foci originated from the delicate interference of the light, the change of the parameters might destroy the hotspots, such as the incident wavelength. Here, a multiwavelength achromatic super-oscillatory metasurface (ASOM) is proposed through simultaneously controlling distinct wavelength-dependent wavefronts. The constructed multiwavelength ASOM is then verified numerically, and the foci are precisely formed at the same axial plane for the design wavelengths with resolution beyond the diffraction limit. We expect that our proposed multiwavelength controllable method will give more freedom for the designs of planar and lightweight components, which would be useful in optical applications, such as data storage, super-resolution imaging, holography, etc.

摘要

基于平面微纳结构的光学超振荡透镜已被证明是在数值孔径受限的光学系统中塑造光的波前和实现超分辨率图像的有前途的替代方案。然而,由于超振荡焦点源于光的精细干涉,参数的变化可能会破坏热点,例如入射波长。在此,通过同时控制不同波长相关的波前,提出了一种多波长消色差超振荡超表面(ASOM)。然后对构建的多波长ASOM进行了数值验证,并且在设计波长的同一轴向平面上精确形成了焦点,分辨率超出了衍射极限。我们期望我们提出的多波长可控方法将为平面和轻型组件的设计提供更多自由度,这将在光学应用中有用,例如数据存储、超分辨率成像、全息术等。

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