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用于室温被动成像的范德瓦尔斯中波长红外探测器线性阵列

Van der Waals mid-wavelength infrared detector linear array for room temperature passive imaging.

作者信息

Xu Tengfei, Zhong Fang, Wang Peng, Wang Zhen, Ge Xun, Wang Jinjin, Wang Hailu, Zhang Kun, Zhang Zhenhan, Zhao Tiange, Yu Yiye, Luo Min, Wang Yang, Jiang Ruiqi, Wang Fang, Chen Fansheng, Liu Qi, Hu Weida

机构信息

State Key Laboratory of Integrated Chips and Systems, Frontier Institute of Chip and System, Fudan University, Shanghai, China.

State Key Laboratory of Infrared Physics, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, Shanghai, China.

出版信息

Sci Adv. 2024 Aug 2;10(31):eadn0560. doi: 10.1126/sciadv.adn0560.

Abstract

Passive imaging for mid-wave infrared (MWIR) is resistant to atmospheric pollutants, guaranteeing image clarity and accuracy. Arrayed photodetectors can simultaneously perform radiation sensing to improve efficiency. Room temperature van der Waals (vdWs) photodetectors without lattice matching have evolved rapidly with optimized stacking methods, primarily for single-pixel devices. The urgent need to implement arrayed devices aligns with practical demands. Here, we present an 8 by 1 black phosphorus/molybdenum sulfide (BP/MoS) vdWs photodetector linear array with a fill-factor of ~77%, fabricated using a temperature-assisted sloping transfer method. The flat interface and uniform thickness facilitate carrier transport and minimize pixel nonuniformities, showing an average peak detectivity () of 2.34 × 10 cm·Hz·W in the mid-wave infrared region. Compared to a single pixel, push-broom scanning passive imaging is eight times more efficient and further enhanced through mean filtering and fast Fourier transform filtering for strip noise correction. Our study offers guidance on vdWs arrayed devices for engineering applications.

摘要

中波红外(MWIR)的被动成像对大气污染物具有抗性,可保证图像的清晰度和准确性。阵列式光电探测器可同时进行辐射传感以提高效率。无晶格匹配的室温范德华(vdWs)光电探测器通过优化堆叠方法发展迅速,主要用于单像素器件。实现阵列式器件的迫切需求符合实际应用要求。在此,我们展示了一种8×1的黑磷/硫化钼(BP/MoS)vdWs光电探测器线性阵列,填充因子约为77%,采用温度辅助倾斜转移方法制造。平坦的界面和均匀的厚度有利于载流子传输,并使像素不均匀性最小化,在中波红外区域显示出平均峰值探测率()为2.34×10 cm·Hz·W。与单像素相比,推扫式扫描被动成像效率提高了八倍,并且通过均值滤波和快速傅里叶变换滤波进行条带噪声校正可进一步增强。我们的研究为vdWs阵列式器件的工程应用提供了指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff2c/11296343/37847fc7b57e/sciadv.adn0560-f1.jpg

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