High-speed graphene/InGaN heterojunction photodetectors for potential application in visible light communication

Author:

Chai Jixing1,Chen Liang1,Cao Ben1,Kong Deqi1,Chen Sheng1,Lin Tingjun1,Wang Wenliang1,Liu Yong2,Li Guoqiang1

Affiliation:

1. South China University of Technology

2. Shanghai Institute of Space Power-Sources

Abstract

Due to the wavelength-selective absorption characteristic of indium gallium nitride (InGaN) ternary alloy, the InGaN-based photodetectors (PDs) show great potential as high signal-to-noise ratio (SNR) receivers in the visible light communication (VLC) system. However, the application of InGaN-based PDs with simple structure in the VLC system is limited by slow speed. Integration of graphene (Gr) with InGaN is an effective strategy for overcoming the limitation. Herein, we report on a high responsivity and fast response PDs based on Gr/InGaN heterojunctions. It finds that the three-layer Gr (T-Gr) can effectively improve the InGaN-based PDs photoelectric properties. The T-Gr/InGaN PDs show a high responsivity of 1.39 A/W@−3 V and a short rise/fall time of 60/200 µs, which are attributed to the combination of the high-quality InGaN epitaxial films and finite density of states of three-layer graphene. The fast response with high responsivity endows the T-Gr/InGaN PDs with great potential for selective detection of the VLC system.

Funder

National Key Research and Development Program of China

Distinguished Youth Foundation of Guangdong Scientific Committee

Young Elite Scientist Sponsorship Program by CAST

Key Area Research and Development Project of Guangdong Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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