Thermal behavior of AlGaN-based deep-UV LEDs

Author:

Lin Su-Hui1,Tseng Ming-Chun2,Horng Ray-Hua3ORCID,Lai Shouqiang1,Peng Kang-Wei1,Shen Meng-Chun1,Wuu Dong-Sing24ORCID,Lien Shui-Yang5,Kuo Hao-Chung36,Chen Zhong1,Wu Tingzhu1ORCID

Affiliation:

1. Xiamen University

2. National Chung Hsing University

3. National Yang Ming Chiao Tung University

4. National Chi Nan University

5. Xiamen University of Technology

6. Hon Hai Research Institute

Abstract

This study utilized thin p-GaN, indium tin oxide (ITO), and a reflective passivation layer (RPL) to improve the performance of deep ultra-violet light-emitting diodes (DUV-LEDs). RPL reflectors, which comprise HfO2/SiO2 stacks of different thickness to maintain high reflectance, were deposited on the DUV-LEDs with 40 nm-thick p-GaN and 12 nm-thick ITO thin films. Although the thin p-GaN and ITO films affect the operation voltage of DUV-LEDs, the highly reflective RPL structure improved the WPE and light extraction efficiency (LEE) of the DUV-LEDs, yielding the best WPE and LEE of 2.59% and 7.57%, respectively. The junction temperature of DUV-LEDs with thick p-GaN increased linearly with the injection current, while that of DUV-LEDs with thin p-GaN, thin ITO, and RPL was lower than that of the Ref-LED under high injection currents (> 500 mA). This influenced the temperature sensitive coefficients (dV/dT, dLOP/dT, and dWLP/dT). The thermal behavior of DUV-LEDs with p-GaN and ITO layers of different thicknesses with/without the RPL was discussed in detail.

Funder

National Natural Science Foundation of China

Major Science and Technology Project of Xiamen, China

Technology Plan Project in Fujian Province of China

Hong Kong University of Science and Technology - Foshan Joint Research Program

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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