Linearly polarized GaN micro-LED with adjustable directional emission integrated with a continuous metasurface

被引:1
作者
Zhang, Hanbin
Wang, Hancheng
Du, Jian
Chen, Wenhao
Wang, Jin
Xue, Junjun
Zhi, Ting [1 ]
机构
[1] Nanjing Univ Posts & Telecommun, Coll Elect & Opt Engn, Nanjing 210023, Peoples R China
基金
国家重点研发计划; 中国博士后科学基金;
关键词
LIGHT-EMITTING-DIODES; REFLECTION;
D O I
10.1063/5.0211495
中图分类号
O59 [应用物理学];
学科分类号
摘要
Traditional LEDs emit light that exhibits incoherence and displays a Lambertian distribution. To achieve linearly polarized (LP) light and control the emission direction, a variety of optical components are required to be stacked, which is unsuitable for compact applications and results in low deflection efficiency. Here, we propose and and numerically simulate a novel single-chip micro-resonant cavity LED (micro-RCLED) device that generates directional LP light by integrating a continuous metasurface. This device includes a bilayer grating at the GaN layer's bottom, providing high transverse electric (TE) reflectivity above 89.5% and an extinction ratio exceeds 57 dB at 500 nm. The top distributed Bragg reflector (DBR) and the bilayer grating together constitute a TE mode Fabry-P & eacute;rot resonant cavity. This not only promotes the emission of the TE wave, but also guarantees its collimation with the appropriate phase, thereby enhancing its spatial coherence. A functional metasurface above the DBR layer precisely controls the TE wave's deflection angle. It maintains a low aspect ratio while enabling efficient, large-angle deflection. The simulation results demonstrate that this device provides an effective solution for generating highly spatially coherent directional LP light, with broad potential applications in fields such as polarized light imaging and advanced 3D micro-LED display systems. (c) 2024 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution-NonCommercial 4.0International (CC BY-NC) license
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页数:11
相关论文
共 35 条
[1]   Recent Progress in Micro-LED-Based Display Technologies [J].
Anwar, Abdur Rehman ;
Sajjad, Muhammad T. ;
Johar, Muhammad Ali ;
Hernandez-Gutierrez, Carlos A. ;
Usman, Muhammad ;
Lepkowski, S. P. .
LASER & PHOTONICS REVIEWS, 2022, 16 (06)
[2]   Enhanced polarization of (11-22) semi-polar InGaN nanorod array structure [J].
Athanasiou, M. ;
Smith, R. M. ;
Hou, Y. ;
Zhang, Y. ;
Gong, Y. ;
Wang, T. .
APPLIED PHYSICS LETTERS, 2015, 107 (14)
[3]   Optical and polarization properties of nonpolar InGaN-based light-emitting diodes grown on micro-rod templates [J].
Bai, J. ;
Jiu, L. ;
Poyiatzis, N. ;
Fletcher, P. ;
Gong, Y. ;
Wang, T. .
SCIENTIFIC REPORTS, 2019, 9 (1)
[4]  
Bang J., 2019, patent application, Patent No. [16/249,957, 16249957]
[5]   High-efficiency semiconductor resonant-cavity light-emitting diodes: A review [J].
Delbeke, D ;
Bockstaele, R ;
Bienstman, P ;
Baets, R ;
Benisty, H .
IEEE JOURNAL OF SELECTED TOPICS IN QUANTUM ELECTRONICS, 2002, 8 (02) :189-206
[6]   Micro-LEDs, a Manufacturability Perspective [J].
Ding, Kai ;
Avrutin, Vitaliy ;
Izyumskaya, Natalia ;
Ozgur, Umit ;
Morkoc, Hadis .
APPLIED SCIENCES-BASEL, 2019, 9 (06)
[7]   Tissue polarimetry: concepts, challenges, applications, and outlook [J].
Ghosh, Nirmalya ;
Vitkin, I. Alex .
JOURNAL OF BIOMEDICAL OPTICS, 2011, 16 (11)
[8]   Linearly polarized light emission from GaN micro-LEDs for 3D display [J].
Huang, Jinpeng ;
Xu, Yi ;
Zhou, Binru ;
Zhan, Huming ;
Cao, Peng ;
Wang, Junxi ;
Li, Jinmin ;
Yi, Xiaoyan ;
Pan, Anlian ;
Wang, Liancheng .
APPLIED PHYSICS LETTERS, 2023, 122 (11)
[9]   GaN-based resonant cavity micro-LEDs for AR application [J].
Huang, Jinpeng ;
Tang, Minglei ;
Zhou, Binru ;
Liu, Zhiqiang ;
Yi, Xiaoyan ;
Wang, Junxi ;
Li, Jinmin ;
Pan, Anlian ;
Wang, Liancheng .
APPLIED PHYSICS LETTERS, 2022, 121 (20)
[10]   Unidirectional-emitting GaN-based micro-LED for 3D display [J].
Huang, Jinpeng ;
Hu, Zelin ;
Gao, Xiang ;
Xu, Yi ;
Wang, Liancheng .
OPTICS LETTERS, 2021, 46 (14) :3476-3479