McClung Andrew, Samudrala Sarath, Torfeh Mahsa, Mansouree Mahdad, Arbabi Amir
Department of Electrical and Computer Engineering, University of Massachusetts Amherst, 151 Holdsworth Way, Amherst, MA 01003, USA.
Sci Adv. 2020 Sep 18;6(38). doi: 10.1126/sciadv.abc7646. Print 2020 Sep.
Spectral imagers divide scenes into quantitative and narrowband spectral channels. They have become important metrological tools in many areas of science, especially remote sensing. Here, we propose and experimentally demonstrate a snapshot spectral imager using a parallel optical processing paradigm based on arrays of metasystems. Our multi-aperture spectral imager weighs less than 20 mg and simultaneously acquires 20 image channels across the 795- to 980-nm spectral region. Each channel is formed by a metasurface-tuned filter and a metalens doublet. The doublets incorporate absorptive field stops, reducing cross-talk between image channels. We demonstrate our instrument's capabilities with both still images and video. Narrowband filtering, necessary for the device's operation, also mitigates chromatic aberration, a common problem in metasurface imagers. Similar instruments operating at visible wavelengths hold promise as compact, aberration-free color cameras. Parallel optical processing using metasystem arrays enables novel, compact instruments for scientific studies and consumer electronics.
光谱成像仪将场景划分为定量且窄带的光谱通道。它们已成为许多科学领域重要的计量工具,尤其是在遥感领域。在此,我们提出并通过实验演示了一种基于超系统阵列的并行光学处理范式的快照光谱成像仪。我们的多孔径光谱成像仪重量不到20毫克,可在795至980纳米光谱区域同时获取20个图像通道。每个通道由一个超表面调谐滤波器和一个金属透镜双合透镜构成。双合透镜包含吸收性视场光阑,可减少图像通道之间的串扰。我们通过静态图像和视频展示了该仪器的性能。该设备运行所需的窄带滤波还减轻了色差,这是超表面成像仪中常见的问题。在可见光波长下运行的类似仪器有望成为紧凑、无像差的彩色相机。使用超系统阵列的并行光学处理为科学研究和消费电子产品带来了新颖、紧凑的仪器。