Shalaginov Mikhail Y, An Sensong, Yang Fan, Su Peter, Lyzwa Dominika, Agarwal Anuradha M, Zhang Hualiang, Hu Juejun, Gu Tian
Department of Materials Science & Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.
Department of Electrical & Computer Engineering, University of Massachusetts Lowell, Lowell, Massachusetts 01854, United States.
Nano Lett. 2020 Oct 14;20(10):7429-7437. doi: 10.1021/acs.nanolett.0c02783. Epub 2020 Sep 18.
Wide field-of-view (FOV) optical functionality is crucial for implementation of advanced imaging and image projection devices. Conventionally, wide FOV operation is attained with complicated assembly of multiple optical elements known as "fisheye lenses". Here we present a novel metalens design capable of performing diffraction-limited focusing and imaging over an unprecedented near 180° angular FOV. The lens is monolithically integrated on a one-piece flat substrate and involves only a single layer of metasurface that corrects third-order Seidel aberrations including coma, astigmatism, and field curvature. The metalens further features a planar focal surface, which enables considerably simplified system architectures for applications in imaging and projection. We fabricated the metalens using Huygens meta-atoms operating at 5.2 μm wavelength and experimentally demonstrated aberration-free focusing and imaging over the entire FOV. The design concept is generic and can be readily adapted to different meta-atom geometries and wavelength ranges to meet diverse application demands.
宽视场(FOV)光学功能对于先进成像和图像投影设备的实现至关重要。传统上,宽视场操作是通过多个被称为“鱼眼镜头”的光学元件的复杂组装来实现的。在此,我们展示了一种新颖的超构透镜设计,它能够在前所未有的近180°角视场内进行衍射极限聚焦和成像。该透镜单片集成在一块平板基板上,仅涉及单层超表面,可校正包括彗差、像散和场曲在内的三阶赛德尔像差。这种超构透镜还具有平面焦面,这使得成像和投影应用的系统架构得以大幅简化。我们使用工作在5.2μm波长的惠更斯超原子制造了该超构透镜,并通过实验证明了在整个视场内无像差聚焦和成像。该设计概念具有通用性,可轻松适应不同的超原子几何形状和波长范围,以满足各种应用需求。