Advancing high-performance visible light communication with long-wavelength InGaN-based micro-LEDs

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作者
Fu-He Hsiao
Wen-Chien Miao
Tzu-Yi Lee
Yi-Hua Pai
Yu-Ying Hung
Daisuke Iida
Chun-Liang Lin
Chi-Wai Chow
Gong-Ru Lin
Kazuhiro Ohkawa
Hao-Chung Kuo
Yu-Heng Hong
机构
[1] Hon Hai Research Institute,Semiconductor Research Center
[2] National Yang Ming Chiao Tung University,Department of Electrophysics, College of Science
[3] National Yang Ming Chiao Tung University,Department of Photonics and Institute of Electro
[4] King Abdullah University of Science and Technology (KAUST),Optical Engineering, College of Electrical and Computer Engineering
[5] National Taiwan University,Computer, Electrical and Mathematical Sciences and Engineering (CEMSE) Division
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摘要
This study showcases a method for achieving high-performance yellow and red micro-LEDs through precise control of indium content within quantum wells. By employing a hybrid quantum well structure with our six core technologies, we can accomplish outstanding external quantum efficiency (EQE) and robust stripe bandwidth. The resulting 30 μm × 8 micro-LED arrays exhibit maximum EQE values of 11.56% and 5.47% for yellow and red variants, respectively. Notably, the yellow micro-LED arrays achieve data rates exceeding 1 Gbit/s for non-return-to-zero on–off keying (NRZ-OOK) format and 1.5 Gbit/s for orthogonal frequency-division multiplexing (OFDM) format. These findings underscore the significant potential of long-wavelength InGaN-based micro-LEDs, positioning them as highly promising candidates for both full-color microdisplays and visible light communication applications.
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