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用于高性能偏振敏感中波红外光电探测器的碲镉汞/黑磷范德华异质结

HgCdTe/black phosphorus van der Waals heterojunction for high-performance polarization-sensitive midwave infrared photodetector.

作者信息

Jiao Hanxue, Wang Xudong, Chen Yan, Guo Shuaifei, Wu Shuaiqin, Song Chaoyu, Huang Shenyang, Huang Xinning, Tai Xiaochi, Lin Tie, Shen Hong, Yan Hugen, Hu Weida, Meng Xiangjian, Chu Junhao, Zhang Yuanbo, Wang Jianlu

机构信息

State Key Laboratory of Infrared Physics, Shanghai Institute of Technical Physics, Chinese Academy of Sciences, 500 Yu Tian Road, Shanghai 200083, China.

University of Chinese Academy of Sciences, No.19 A Yuquan Road, Beijing 100049, China.

出版信息

Sci Adv. 2022 May 13;8(19):eabn1811. doi: 10.1126/sciadv.abn1811. Epub 2022 May 11.

Abstract

New-generation infrared detectors call for higher operation temperature and polarization sensitivity. For traditional HgCdTe infrared detectors, the additional polarization optics and cryogenic cooling are necessary to achieve high-performance infrared polarization detection, while they can complicate this system and limit the integration. Here, a mixed-dimensional HgCdTe/black phosphorous van der Waals heterojunction photodiode is proposed for polarization-sensitive midwave infrared photodetection. Benefiting from van der Waals integration, type III broken-gap band alignment heterojunctions are achieved. Anisotropy optical properties of black phosphorous bring polarization sensitivity from visible light to midwave infrared without external optics. Our devices show an outstanding performance at room temperature without applied bias, with peak blackbody detectivity as high as 7.93 × 10 cm Hz W and average blackbody detectivity over 2.1 × 10 cm Hz W in midwave infrared region. This strategy offers a possible practical solution for next-generation infrared detector with high operation temperature, high performance, and multi-information acquisition.

摘要

新一代红外探测器需要更高的工作温度和偏振灵敏度。对于传统的碲镉汞红外探测器,需要额外的偏振光学器件和低温冷却才能实现高性能的红外偏振探测,然而这会使系统变得复杂并限制集成度。在此,我们提出了一种混合维度的碲镉汞/黑磷范德华异质结光电二极管用于偏振敏感的中波红外光电探测。受益于范德华集成,实现了III型破隙能带对准异质结。黑磷的各向异性光学特性使得无需外部光学器件就能实现从可见光到中波红外的偏振灵敏度。我们的器件在室温下无外加偏压时表现出优异的性能,在中波红外区域的峰值黑体探测率高达7.93×10 cm Hz W,平均黑体探测率超过2.1×10 cm Hz W。该策略为具有高工作温度、高性能和多信息采集能力的下一代红外探测器提供了一种可能的实用解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81f9/9094662/4f4af0d8dd12/sciadv.abn1811-f1.jpg

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