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Improved efficiency of InGaN/GaN light-emitting diodes with perpendicular magnetic field gradients

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Abstract
The effect of magnetic fields on the optical output power of flip-chip light-emitting diodes (LEDs) with InGaN/GaN multiple quantum wells (MQWs) was investigated. Films and circular disks comprising ferromagnetic cobalt/platinum (Co/Pt) multilayers were deposited on a p-ohmic reflector to apply magnetic fields in the direction perpendicular to the MQWs of the LEDs. At an injection current of 20 mA, the ferromagnetic Co/Pt multilayer film increased the optical output power of the LED by 20% compared to an LED without a ferromagnetic Co/Pt multilayer. Furthermore, the optical output power of the LED with circular disks was 40% higher at 20 mA than the output of the LED with a film. The increase of the optical output power of the LEDs featuring ferromagnetic Co/Pt multilayers is attributed to the magnetic field gradient in the MQWs, which increases the carrier path in the MQWs. The time-resolved photoluminescence measurement indicates that the improvement of optical output power is owing to an enhanced radiative recombination rate of the carriers in the MQWs as a result of the magnetic field gradient from the ferromagnetic Co/Pt multilayer.
Author(s)
Han J.-H.Kim J.-J.Leem Y.-C.Kim S.-J.Kwak W.Jeong W.-L.Cho, Beong KiLee, Dong-SeonPark, Seong-Ju
Issued Date
2019-12
Type
Article
DOI
10.1364/OE.27.036708
URI
https://scholar.gist.ac.kr/handle/local/8820
Publisher
Optical Society of America
Citation
Optics Express, v.27, no.25, pp.36708 - 36716
ISSN
1094-4087
Appears in Collections:
Department of Materials Science and Engineering > 1. Journal Articles
Department of Semiconductor Engineering > 1. Journal Articles
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