Broadband achromatic metasurface filter for apodization imaging in the visible

Q3 Engineering 光电工程 Pub Date : 2021-05-28 DOI:10.12086/OEE.2021.200466
Li Zhu, Wang Changtao, Kong Weijie, W. Yanqin, Guo Yinghui, Li Xiong, Ma Xiaoliang, Pu Mingbo, Luo Xiangang
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引用次数: 2

Abstract

Apodization has found many important applications in imaging and optical communication. Traditional apodization methods are based on the phase or amplitude modulation, suffering from either narrow working bandwidth, or reduced spatial resolution. Here, a broadband achromatic metasurface filter is proposed to realize apodization imaging without sacrificing the spatial resolution. With this filter, a nearly dispersionless phase modulation in the entire visible waveband can be achieved. The simulated results indicate that the focusing efficiency of the metasurface filter is twice larger than that of the phase filter and the imaging contrast can be improved by three times with the metasurface filter compared to the Gaussian filter. The sidelobes in the point spread function can also be efficiently suppressed to the scale of 10-5 in the whole visible spectrum ranging from 400 nm to 700 nm with our design. Additionally, the resolution of diffraction limit or even sub-diffraction can be achieved with this method.
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宽频带消色差超表面滤光片,用于可见光消色差成像
apodiization在成像和光通信中有许多重要的应用。传统的消光方法是基于相位或幅度调制,工作带宽较窄,空间分辨率较低。本文提出了一种宽频带消色差超表面滤波器,在不牺牲空间分辨率的前提下实现消色差成像。利用该滤波器,可以在整个可见波段内实现几乎无色散的相位调制。仿真结果表明,超表面滤波器的聚焦效率比相位滤波器高2倍,成像对比度比高斯滤波器提高3倍。在400 ~ 700 nm的可见光谱范围内,点扩展函数的副瓣也可以有效地抑制到10-5的比例。此外,该方法还可以实现衍射极限甚至亚衍射的分辨。
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来源期刊
光电工程
光电工程 Engineering-Electrical and Electronic Engineering
CiteScore
2.00
自引率
0.00%
发文量
6622
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