Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group

High brightness and broad modulation bandwidth InGaN-based red micro-LEDs integrated with plasmonic gratings

Not Accessible

Your library or personal account may give you access

Abstract

We propose red micro-LEDs integrated with plasmonic gratings, which demonstrate high efficiency and broad modulation bandwidth. The Purcell factor and external quantum efficiency (EQE) for an individual device can be improved up to 5.1 and 11%, respectively, due to the strong coupling between surface plasmons and multiple quantum wells. The cross talk effect between adjacent micro-LEDs can be efficiently alleviated as well, thanks to the high-divergence far-field emission pattern. Moreover, the 3-dB modulation bandwidth of the designed red micro-LEDs is predicted to be ∼ 528 MHz. Our results can be used to design high-efficiency and high-speed micro-LEDs for the applications of advanced light display and visible light communication.

© 2022 Optica Publishing Group

Full Article  |  PDF Article
More Like This
High-efficiency InGaN red micro-LEDs for visible light communication

Yu-Ming Huang, Chun-Yen Peng, Wen-Chien Miao, Hsin Chiang, Tzu-Yi Lee, Yun-Han Chang, Konthoujam James Singh, Z. Daisuke Iida, Ray-Hua Horng, Chi-Wai Chow, Chien-Chung Lin, Kazuhiro Ohkawa, Shih-Chen Chen, and Hao-Chung Kuo
Photon. Res. 10(8) 1978-1986 (2022)

Parallel micro-LED arrays with a high modulation bandwidth for a visible light communication

Sunan Yao, Huaqing Chai, Lei Lei, Zihe Zhu, Guoqiang Li, and Wenliang Wang
Opt. Lett. 47(14) 3584-3587 (2022)

Optical properties of highly polarized InGaN light-emitting diodes modified by plasmonic metallic grating

Hong Chen, Houqiang Fu, Zhijian Lu, Xuanqi Huang, and Yuji Zhao
Opt. Express 24(10) A856-A867 (2016)

Supplementary Material (1)

NameDescription
Supplement 1       Supplemental document

Data availability

Data underlying the results presented in this paper are not publicly available at this time but may be obtained from the authors upon reasonable request.

Cited By

You do not have subscription access to this journal. Cited by links are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Figures (5)

You do not have subscription access to this journal. Figure files are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Equations (3)

You do not have subscription access to this journal. Equations are available to subscribers only. You may subscribe either as an Optica member, or as an authorized user of your institution.

Contact your librarian or system administrator
or
Login to access Optica Member Subscription

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.