Short‐Wave Infrared Photodetectors Based on β‐In2Se3/Te Heterojunctions for Optical Communication and Polarimetric Imaging Applications

Author:

Xiong Jingxian1,Yu Qiang12,Hou Xingang2,Liu Bin3,Li Sina4,Deng Haiqin1,Yang Zixin1,Leng Jinyong1,Zhu Sicong35,Sun Yiming4,Jiang Zongfu1,Huo Nengjie4,Wu Jian1ORCID,Zhou Pu1

Affiliation:

1. College of Advanced Interdisciplinary Studies National University of Defense Technology Changsha 410073 P. R. China

2. i‐Lab & Key Laboratory of Nanodevices and Applications & Key Laboratory of Nanophotonic Materials and Devices Suzhou Institute of Nano‐Tech and Nano‐Bionics Chinese Academy of Sciences Suzhou 215125 P. R. China

3. Hubei Province Key Laboratory of Systems Science in Metallurgical Process The State Key Laboratory for Refractories and Metallurgy Collaborative Innovation Center for Advanced Steels International Research Institute for Steel Technology Wuhan University of Science and Technology Wuhan 430081 P. R. China

4. School of Semiconductor Science and Technology South China Normal University Foshan 528225 P. R. China

5. Department of Mechanical Engineering National University of Singapore Singapore 117575 Singapore

Abstract

AbstractPolarization‐sensitive infrared photodetectors have vast application prospects in imaging systems and polarization sensors due to the addition of new detection dimensions beyond wavelength and intensity. However, most polarization‐sensitive photodetectors are operated in the visible wavelength range and still encounter challenges of limited responsivity (R) and polarization ratio (PR) under short‐wave infrared illumination. To address these issues, a vertical heterostructure of β‐In2Se3‐on‐Te is reported, achieving high‐performance and polarization‐sensitive imaging sensors in the short‐wave infrared (SWIR) region. The high R (2 A/W at 1310 nm and 0.71 A/W at 1550 nm) and specific detectivity (2.14 × 109 Jones at 1310 nm and 7.3 × 108 at 1550 nm) are obtained, which surpasses most photodetectors using anisotropic 2D material in the infrared range. Considering the strong anisotropic nature of Te nanosheets, the device exhibits notable polarization sensitivity with a PR value of 4.95 under 1310 nm laser irradiation. This work proposes a multifunctional photodetector for the great applications of ASCII code transmission and polarization‐sensitive infrared imaging, offering a new opportunity for versatile angle‐resolved optoelectronics in the infrared communication band.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

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