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

Author:

Jiao Hanxue1ORCID,Wang Xudong1ORCID,Chen Yan1,Guo Shuaifei2,Wu Shuaiqin1,Song Chaoyu2,Huang Shenyang2,Huang Xinning1,Tai Xiaochi1,Lin Tie1,Shen Hong1,Yan Hugen2ORCID,Hu Weida1ORCID,Meng Xiangjian1,Chu Junhao1ORCID,Zhang Yuanbo2ORCID,Wang Jianlu1ORCID

Affiliation:

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

2. State Key Laboratory of Surface Physics and Department of Physics, Fudan University, Shanghai 200438, China.

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 10 cm Hz 1/2 W −1 and average blackbody detectivity over 2.1 × 10 10 cm Hz 1/2 W −1 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.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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