Plasmonic Photovoltaic Effect of an Original 2D Electron Gas System and Application in Mid‐Infrared Imaging

Author:

Wang Yao123,Zhu Haiming123,Wu Chunxiang1,Ren Ziyang123,Liu Mengjuan123,Zhai Yihui123,Zhou Zhou123,Gou Hanguang4567,Luo Xuefeng8910,Sheng Yusong11,Fang Wei891012,Fang Minghu1,Zhu He11,Ali Nasir13,Lai Weien4567,Zhu Jiaqi11,Zhao Sihan123,Wu Huizhen123ORCID

Affiliation:

1. School of Physics Zhejiang University Hangzhou 310027 Zhejiang China

2. Zhejiang Key Laboratory of Micro‐nano Quantum Chips and Quantum Control Zhejiang University Hangzhou 310027 Zhejiang China

3. State Key Laboratory of Silicon and Advanced Semiconductor Materials Zhejiang University Hangzhou 310027 Zhejiang China

4. National Engineering Laboratory of Special Display Technology Hefei University of Technology Hefei 230009 Anhui China

5. National Key Laboratory of Advanced Display Technology Hefei University of Technology Hefei 230009 Anhui China

6. Anhui Province Key Laboratory of Measuring Theory and Precision Instrument Academy of OptoElectronic Technology Hefei University of Technology Hefei 230009 Anhui China

7. School of Instrument Science and Opto‐electronics Engineering Academy of OptoElectronic Technology Hefei University of Technology Hefei 230009 Anhui China

8. Interdisciplinary Center for Quantum Information Zhejiang University Hangzhou 310027 Zhejiang China

9. State Key Laboratory of Extreme Photonics and Instrumentation Zhejiang University Hangzhou 310027 Zhejiang China

10. College of Optical Science and Engineering Zhejiang University Hangzhou 310027 Zhejiang China

11. Hangzhou Institute for Advanced Study University of Chinese Academy of Sciences Hangzhou 310024 Zhejiang China

12. Intelligent Optics & Photonics Research Center Jiaxing Institute of Zhejiang University Jiaxing 314000 Zhejiang China

13. Research center for frontier and fundamental studies Zhejiang Lab Yuhang Hangzhou 311121 Zhejiang China

Abstract

AbstractOwing to their consistently emerging applications in modern photonics, highly sensitive and rapid mid‐infrared (MIR) photodetectors, operating at high temperatures, are of great significance. Herein, a novel PbTe/Ge heterostructure is introduced. Notably, the discovery of a 2D electron gas (2DEG) system on the surface of the PbTe layer is experimentally identified for the first time. A high‐performance PbTe/Ge heterostructure MIR photodetector utilizing a plasmonic photovoltaic effect is developed by employing asymmetric electrodes. The photodetecting device demonstrates an exceptionally high detectivity of 1.1 × 1011 Jones along with a short response time of 15 ns at room temperature. Additionally, the proposed plasmonic photovoltaic mechanism of the device is investigated and mainly ascribed to the propagating plasmons, generated by the coupling of the 2DEG with incident MIR photons. Moreover, a linear detector array (LDA) of PbTe/Ge is demonstrated for a thermal imaging application, which exhibits promising high‐quality real‐time imaging via the 2D photodetector arrays on Ge‐based integrated circuits. This work opens up a new way for the development of next‐generation, advanced MIR photonic devices and integrated photonic systems.

Funder

Chinesisch-Deutsche Zentrum für Wissenschaftsförderung

National Natural Science Foundation of China

Natural Science Foundation of Zhejiang Province

National Key Research and Development Program of China

Publisher

Wiley

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