光传递函数
光学
振幅
数值孔径
相(物质)
镜头(地质)
调幅
光圈(计算机存储器)
干涉测量
物理
相位调制
调制(音乐)
极限(数学)
传递函数
频率调制
电信
计算机科学
相位噪声
数学
波长
带宽(计算)
数学分析
工程类
电气工程
量子力学
声学
作者
Jian Zhang,Xiong Dun,Jingyuan Zhu,Zhanyi Zhang,Chao Feng,Zhanshan Wang,Wolfgang Heidrich,Xinbin Cheng
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2023-03-14
卷期号:10 (5): 1389-1396
被引量:11
标识
DOI:10.1021/acsphotonics.2c02029
摘要
Large numerical aperture (NA) lenses with high modulation transfer functions (MTFs) promise high image resolution for advanced optical imaging. However, it is challenging to achieve a high MTF using traditional large-NA lenses, which are fundamentally limited by the amplitude mismatch. In contrast, metasurfaces are promising for realizing amplitude and phase matching for ideal lenses. However, current metalenses are mostly based on a phase-only (PO) profile because the strong coupling among the metaatoms in large-NA lenses makes perfect amplitude matching quite challenging to realize. Here, we derive a phase-and-amplitude (PA) profile that approaches the theoretical MTF limit for large-NA lenses and use interferometric unit cells combined with a segmented sampling approach to achieve the desired amplitude and phase control. For the first time, we show that the amplitude does not require a perfect match; realizing the trend of the required amplitude is sufficient to significantly increase the MTF of a large-NA lens. We demonstrated a 0.9 NA cylindrical metalens at 940 nm with a Struve ratio (SR), which describes how close the MTF is to the upper limit, increasing from 0.68 to 0.90 compared with the PO metalens. Experimentally, we achieved an SR of 0.77 for the 0.9 NA lens, which is even 0.09 higher than the simulated SR of the PO metalens. Our investigation provides new insights for large-NA lenses and has potential applications in high-image-resolution optical systems.
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