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基于BiSe/AlInAsSb异质结的自供电超宽光电探测器中的双极调制用于波长敏感成像和加密光通信。

Bipolar Modulation in a Self-Powered Ultra-Wide Photodetector Based on BiSe/AlInAsSb Heterojunction for Wavelength-Sensitive Imaging and Encrypted Optical Communication.

作者信息

Han Yajie, Jiao Shujie, Zhang Xiangyu, Rong Ping, Zhao Yue, Jiang Dongwei, He Wen, Wang Dongbo, Gao Shiyong, Wang Jinzhong

机构信息

School of Materials Science and Engineering, Harbin Institute of Technology, Harbin, 150001, China.

Key Laboratory of Optoelectronic Materials and Devices, Institute of semiconductors, Chinese Academy of Sciences, Beijing, 100083, China.

出版信息

Adv Mater. 2025 Feb;37(7):e2416935. doi: 10.1002/adma.202416935. Epub 2024 Dec 25.

Abstract

Broadband photodetectors (PDs) have garnered significant attention due to their ability to detect optical signals across a wide wavelength range, with applications spanning military reconnaissance, environmental monitoring, and medical imaging. However, existing broadband detectors face several practical challenges, including limited detection range, uneven photoresponse, and difficult to distinguish multispectral signals. To address these limitations, this study presents a self-powered ultra-wide PD based on the BiSe/AlInAsSb heterojunction. The device can detect signals across a wide wavelength range from 250 nm to 1900 nm, exhibiting outstanding optoelectronic performance with a maximum responsivity of 0.5 A W, a detectivity of 4.2 × 10 Jones, a switching ratio of 1.1 × 10, and an external quantum efficiency of 71.4%. Furthermore, the detector achieves a detectivity greater than 10 Jones across the entire broadband range, significantly improving photoresponse uniformity. Notably, due to the differential band alignment of the two materials across spectral ranges, this detector exhibits a photocurrent polarity reversal in the 650-680 nm range. Leveraging its broadband and bipolar characteristics, this PD successfully enables secure information encryption in communication systems. This study significantly advances broadband PD technology, enhancing its practical uses and introducing innovative solutions for secure communications, thus strengthening communication security and confidentiality.

摘要

宽带光电探测器(PDs)因其能够在宽波长范围内检测光信号而备受关注,其应用涵盖军事侦察、环境监测和医学成像等领域。然而,现有的宽带探测器面临着几个实际挑战,包括检测范围有限、光响应不均匀以及难以区分多光谱信号。为了解决这些限制,本研究提出了一种基于BiSe/AlInAsSb异质结的自供电超宽带PD。该器件能够检测从250纳米到1900纳米的宽波长范围内的信号,展现出出色的光电性能,最大响应度为0.5安/瓦,探测率为4.2×10琼斯,开关比为1.1×10,外部量子效率为71.4%。此外,该探测器在整个宽带范围内实现了大于10琼斯的探测率,显著提高了光响应均匀性。值得注意的是,由于两种材料在不同光谱范围内的能带排列差异,该探测器在650 - 680纳米范围内表现出光电流极性反转。利用其宽带和双极性特性,这种PD成功地实现了通信系统中的安全信息加密。本研究显著推动了宽带PD技术的发展,增强了其实际应用,并为安全通信引入了创新解决方案,从而加强了通信安全和保密性。

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