Study of Nanoscale Three Deminsional Au/Gan Schottky Junctions: Fabrication, Morphology and Optoelectronic Properties

27 Pages Posted: 6 Sep 2023

See all articles by Zhao Shen

Zhao Shen

Qingdao University

Sui Mao

Qingdao University - Institute of Hybrid Materials

Hao Jing

Qingdao University

Yadong Xu

Qingdao University

Quanzhen Zhang

Beijing Institute of Technology

Laurence A. Belfiore

Colorado State University, Fort Collins

Jianguo Tang

Qingdao University - Institute of Hybrid Materials

Abstract

Owing to the effective carrier transfer at interface, the utilization of three-dimensional (3D) Schottky junctions transcends the limitations imposed by planar junctions, exhibiting significant potentials in optoelectronics of plasmon-semiconductor system. However, in nanoscale, widespread adoption of 3D Schottky junctions are significantly hindered by complexities of nanoscale photolithography processes.  In this work, the Au/GaN 3D Schottky junctions are fabricated via thermal induced etching process. The etching behavior is investigated in terms of morphology and optical properties. Based 3D Schottky junctions, GaN metal-semiconductor-metal photodetectors are fabricated and the optoelectronic properties of Au/GaN 3D Schottky barriers are investigated. With 3D Schottky junctions, the sensitivity and detectivity have been improved by 20.7 and 3.6 times in comparison with the planar Au/GaN junctions. Meanwhile, the noise equivalent power has been reduced of 76.3%, showing a large improvement in response of small signals.

Keywords: Au nanoparticles, GaN, etching, 3D Schottky junctions, Photodetectors

Suggested Citation

Shen, Zhao and Mao, Sui and Jing, Hao and Xu, Yadong and Zhang, Quanzhen and Belfiore, Laurence A. and Tang, Jianguo, Study of Nanoscale Three Deminsional Au/Gan Schottky Junctions: Fabrication, Morphology and Optoelectronic Properties. Available at SSRN: https://ssrn.com/abstract=4562965 or http://dx.doi.org/10.2139/ssrn.4562965

Zhao Shen

Qingdao University ( email )

No. 308 Ning Xia Road
Qingdao, 266071
China

Sui Mao (Contact Author)

Qingdao University - Institute of Hybrid Materials ( email )

Qingdao
China

Hao Jing

Qingdao University ( email )

No. 308 Ning Xia Road
Qingdao, 266071
China

Yadong Xu

Qingdao University ( email )

No. 308 Ning Xia Road
Qingdao, 266071
China

Quanzhen Zhang

Beijing Institute of Technology ( email )

5 South Zhongguancun street
Center for Energy and Environmental Policy Researc
Beijing, 100081
China

Laurence A. Belfiore

Colorado State University, Fort Collins ( email )

Fort Collins, CO 80523
CO 80523
United States

Jianguo Tang

Qingdao University - Institute of Hybrid Materials ( email )

Qingdao
China

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