Optical power degradation mechanisms in 271 nm AlGaN-based deep ultraviolet light-emitting diodes

Author:

Shen Chu-Hui1,Yang Ren-Long12,Gong Hong-Lin1,Zhu Li-Hong1,Gao Yu-Lin1,Chen Guo-Long1,Chen Zhong1,Lu Yi-jun1ORCID

Affiliation:

1. Xiamen University

2. Xiamen San’an Optoelectronics Co. Ltd.

Abstract

The degradation of AlGaN-based UVC LEDs under constant temperature and constant current stress for up to 500 hrs was analyzed in this work. During each degradation stage, the two-dimensional (2D) thermal distributions, I-V curves, optical powers, combining with focused ion beam and scanning electron microscope (FIB/SEM), were thoroughly tested and analyzed the properties and failure mechanisms of UVC LEDs. The results show that: 1) the opto-electrical characteristics measured before/during stress indicate that the increased leakage current and the generation of stress-induced defects increase the non-radiative recombination in the early stress stage, resulting in a decrease in optical power; 2) the increase of temperature caused by the deterioration of the Cr/Al layer of p-metal after 48 hrs of stress aggravates the optical power in UVC LEDs. The 2D thermal distribution in conjunction with FIB/SEM provide a fast and visual way to precisely locate and analyze the failure mechanisms of UVC LEDs.

Funder

National Natural Science Foundation of China

Major Science and Technology Project of Fujian Province

Natural Science Foundation of Fujian Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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