Investigation of carrier transport and recombination at type-II band aligned p-NiO/AlGaN interface in p-NiO gate AlGaN/GaN HEMTs under forward bias

Author:

Peng Yanghu1,Guo Hui12ORCID,Gong Ruiling1,Liu Huaize1,Shao Pengfei1ORCID,Sun Na1,Ren Fangfang1ORCID,Ye Jiandong1,Zheng Youdou1,Lu Hai1ORCID,Zhang Rong13ORCID,Chen Dunjun1ORCID

Affiliation:

1. Jiangsu Provincial Key Laboratory of Advanced Photonic and Electronic Materials, School of Electronic Science and Engineering, Nanjing University 1 , Nanjing, China

2. Interdisciplinary Research Center for Future Intelligent Chips (Chip-X), Nanjing University 2 , Suzhou, China

3. Xiamen University 3 , Xiamen, China

Abstract

In this work, fine carrier transport and recombination processes in p-NiO gate AlGaN/GaN high electron mobility transistors were investigated by analyzing their electroluminescence under forward gate bias, with photoluminescence spectrum as a reference. Red luminescence with a peak of 1.9 eV was captured when the gate bias voltage exceeded 4 V, which was verified to originate from the tunneling enhanced interface recombination of injected holes from the gate metal and spilled electrons from the 2DEG channel at the type-II band aligned p-NiO/AlGaN heterostructure interface. Under higher gate bias voltage, holes were further injected into the GaN buffer layer, producing ultraviolet luminescence and yellow luminescence, corresponding respectively to the band edge emission and defect-assisted radiative recombination of GaN. Threshold voltage shift measurements under forward gate bias were conducted to further investigate the carrier transport and recombination processes.

Funder

National Key Research and Development Program of China

the Key Research and Development Project of Jiangsu Province, China

the National Naturel Science Foundation of China

China Postdoctoral Science Foundation

Publisher

AIP Publishing

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