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GaAs-based red micro-light-emitting diodes with an oxide perimeter region for improved external quantum efficiencyopen access

Authors
Min, SangjinChoi, Won-JinKim, Dong HwanKim, KeukPark, JaehyeokRyu, Han-YoulShim, Jong-InShin, Dong-Soo
Issue Date
Oct-2024
Publisher
American Institute of Physics Inc.
Citation
AIP Advances, v.14, no.10, pp 1 - 5
Pages
5
Indexed
SCIE
SCOPUS
Journal Title
AIP Advances
Volume
14
Number
10
Start Page
1
End Page
5
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/121266
DOI
10.1063/5.0230502
ISSN
2158-3226
Abstract
Red micro-light-emitting diodes (mu-LEDs) with AlGaInP/GaInP multiple quantum wells are fabricated with an oxide perimeter region to control the current injection path. When the values of the external quantum efficiency (EQE) of the 30 mu m-size mu-LED with the oxide perimeter region are compared with those of the device without the oxide perimeter region, an improvement as high as 40% is observed at current densities <80 A/cm(2). From the finite-difference time-domain simulation of the light-extraction efficiency (LEE), which shows that the LEE of the device with the oxide perimeter region is similar to 12% smaller than that of the device without the oxide perimeter region, it can be seen that the increased EQE is attributed to the improvement of the internal quantum efficiency (IQE). Since the oxide perimeter region limits the current paths to the sidewalls of the mu-LED chips, the nonradiative recombination via sidewall defects is considered suppressed, resulting in the improvement of the IQE. The oxidation of the AlGaAs layer utilized in this work is easy to implement and accurately controllable, suitable for mass-production of high-efficiency red mu-LEDs for display applications. (c) 2024 Author(s).
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ERICA 첨단융합대학 (ERICA 반도체·디스플레이공학전공)
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