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基于宽带防水锑硒异质结光电探测器的水下多光谱计算成像

Underwater Multispectral Computational Imaging Based on a Broadband Water-Resistant SbSe Heterojunction Photodetector.

作者信息

Liu Yujin, Liu Cong, Shen Kai, Sun Peng, Li Wanjun, Zhao Chuanxi, Ji Zhong, Mai Yaohua, Mai Wenjie

机构信息

Siyuan Laboratory, Guangdong Provincial Engineering Technology Research Center of Vacuum Coating Technologies and New Energy Materials, Department of Physics, Jinan University, Guangzhou, Guangdong 510632, China.

Institute of New Energy Technology, College of Information Science and Technology, Jinan University, Guangzhou, Guangdong 510632, China.

出版信息

ACS Nano. 2022 Apr 26;16(4):5820-5829. doi: 10.1021/acsnano.1c10936. Epub 2022 Mar 25.

Abstract

Exploration, utilization, and protection of marine resources are of great significance to the survival and development of mankind. However, currently classical optical cameras suffer information loss, low contrast, and color distortion due to the absorption and scattering nature for the underwater environment. Here, we demonstrate an underwater multispectral computational imaging system combined with single-photodetector imaging algorithm technology and a CdS/SbSe heterojunction photodetector. The computational imaging technology coupled with an advanced Fourier algorithm can capture a scene by a single photodetector without spatial resolution that avoids the need to rely on high-density detectors array and bulky optical components in traditional imaging systems. This convenient computational imaging method provides more flexible possibilities for underwater imaging and promises to give more imaging capabilities (such as multispectral imaging, antiscattering imaging capability) to meet ever-changing demand of underwater imaging. In addition, the water-resistant CdS/SbSe heterojunction photodetector fabricated by the close spaced sublimation (SbSe) and chemical bath deposition (CdS) shows excellent self-powered photodetection performance at zero bias with high LDR of 128 dB, broadband response spectrum range of 300-1050 nm, high responsivity up to 0.47 A/W, and high specific detectivity over 5 × 10 jones. Compared with the traditional optical imaging system, our designed computational imaging system that combines the advanced Fourier algorithm and a high-performance CdS/SbSe heterojunction photodetector exhibits outstanding antiscattering imaging capability (shielded by frosted glass), weak light imaging capability (∼0.2 μW/cm, corresponding to moonlight intensity), and multispectral imaging capability. Therefore, we believe that this work will boost the progress of marine science.

摘要

海洋资源的勘探、利用和保护对人类的生存与发展具有重大意义。然而,目前传统光学相机由于水下环境的吸收和散射特性,存在信息丢失、对比度低和颜色失真等问题。在此,我们展示了一种结合单光子探测器成像算法技术和CdS/SbSe异质结光电探测器的水下多光谱计算成像系统。与先进的傅里叶算法相结合的计算成像技术可以通过单个没有空间分辨率的探测器捕获场景,避免了传统成像系统中依赖高密度探测器阵列和笨重光学元件的需求。这种便捷的计算成像方法为水下成像提供了更灵活的可能性,并有望赋予更多成像能力(如多光谱成像、抗散射成像能力)以满足不断变化的水下成像需求。此外,通过近距离升华(SbSe)和化学浴沉积(CdS)制备的防水CdS/SbSe异质结光电探测器在零偏压下表现出优异的自供电光电探测性能,具有128 dB的高LDR、300 - 1050 nm的宽带响应光谱范围、高达0.47 A/W的高响应度以及超过5×10琼斯的高比探测率。与传统光学成像系统相比,我们设计的结合先进傅里叶算法和高性能CdS/SbSe异质结光电探测器的计算成像系统展现出出色的抗散射成像能力(用磨砂玻璃遮挡)、弱光成像能力(~0.2 μW/cm,对应月光强度)和多光谱成像能力。因此,我们相信这项工作将推动海洋科学的进步。

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