用于线性二色性和波前处理的单片全介质超表面

Jixiang Cai, Honglin Yu
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引用次数: 0

摘要

正交极化电磁波同时具有二色性和波前操纵功能,在偏振成像、偏振传感、矢量生成和光通信等领域引起了广泛的关注。然而,传统的方法需要将许多光学元件组合在一起,这限制了光学系统的集成度,降低了光学系统的效率。虽然多层超表面已被提出以提高效率,但复杂的制作阻碍了其实际应用。在此,我们利用单片全介质超表面同时实现线性二色性和基于局部偏振选择性相消干涉原理的波前处理。在中心波长532 nm处,全介电超表面的平均透过率超过87.88%,极化消光比达到23 dB。这种高性能的超表面可以为复杂光场的控制提供一种新的方案,并在偏振成像或其他光学领域取代大块光学元件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monolithic all-dielectric metasurface for simultaneous linear dichroism and wavefront manipulation
The functionality of simultaneous dichroism and wavefront manipulation of orthogonally polarized electromagnetic waves has attracted considerable attention in the fields of polarization imaging, polarization sensing, vector generation, and optical communication. However, the conventional methodology requires the combination of many optical components, which limits the integration and reduces the efficiency of optical systems. Although multilayer metasurfaces have been proposed to increase efficiency, complicated fabrication hinders its practical applications. Herein, we employ the monolithic all-dielectric metasurface to simultaneously implement linear dichroism and wavefront manipulation based on the principle of local polarization-selective constructive or destructive interference. The average transmittance exceeding 87.88% and polarization extinction ratio up to 23 dB are achieved by the all-dielectric metasurface at the central wavelength of 532 nm. It is believed that this high-performance metasurface may provide a novel scheme for the complex optical field manipulation and replace the bulk optical elements in polarization imaging or other optical domains.
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