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P-type silicon as hole supplier for nitride-based UVC LEDs.

Authors :
Cho, Sang June
Liu, Dong
Seo, Jung-Hun
Dalmau, Rafael
Kim, Kwangeun
Park, Jeongpil
Gong, Jiarui
Zhao, Deyin
Wang, Fei
Yin, Xin
Jung, Yei Hwan
Lee, In-Kyu
Kim, Munho
Wang, Xudong
Albrecht, John D.
Zhou, Weidong
Moody, Baxter
Ma, Zhenqiang
Source :
New Journal of Physics; Feb2019, Vol. 21 Issue 2, p1-9, 9p
Publication Year :
2019

Abstract

The ineffective p-type doping of nitrides using magnesium (Mg), the best available dopant, has limited the development and performance of all III-nitride-based devices, including bipolar junction transistors and light emitting diodes (LEDs). For nitride-based ultraviolet (UV) LEDs, as the Al composition increases for achieving shorter wavelengths (e.g. <280 nm) into the UVC spectral range, the p-type doping issue, which causes very inefficient hole injection, becomes more severe than ever. In this work, we report the detailed study of using p-type Si as a hole supplier for high-Al composition UVC LEDs. We first describe the method of Si/GaN junction formation, where the lattice-mismatch challenge between Si and GaN is overcome by using a 0.5 nm thick Al<subscript>2</subscript>O<subscript>3</subscript> layer at the interface. This serves as a physical separation layer between the two materials as well as a passivation, tunneling, and thermal buffer layer. High-resolution transmission electron microscope image illustrates the high-quality interface between Si and GaN. We further detail the hole transport mechanism of the p–p Si/GaN isotype junction through both simulations and experiments. The enhanced hole concentration in the AlGaN/AlN multiple quantum wells (MQWs) due to the use of p-type Si as the hole supplier is verified through comparison with conventional UVC LEDs. Finally, high-performance UVC LEDs made with AlN/AlGaN (Al: 72%) MQWs employing p-type Si as their hole suppliers are demonstrated experimentally to serve as an example of the novel hole injector strategy. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13672630
Volume :
21
Issue :
2
Database :
Complementary Index
Journal :
New Journal of Physics
Publication Type :
Academic Journal
Accession number :
152287878
Full Text :
https://doi.org/10.1088/1367-2630/ab0445