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A tutorial on laser-based lighting and visible light communications:device and technology [Invited]

A tutorial on laser-based lighting and visible light communications:device and technology [Invited]
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摘要 This tutorial focuses on devices and technologies that are part of laser-based visible light communication(VLC)systems. Laser-based VLC systems have advantages over their light-emitting-diode-based counterparts, including having high transmission speed and long transmission distance. We summarize terminologies related to laser-based solid-state lighting and VLC, and further review the advances in device design and performance.The high-speed modulation characteristics of laser diodes and superluminescent diodes and the on-chip integration of optoelectronic components in the visible color regime, such as the high-speed integrated photodetector,are introduced. The modulation technology for laser-based white light communication systems and the challenges for future development are then discussed. This tutorial focuses on devices and technologies that are part of laser-based visible light communication(VLC)systems. Laser-based VLC systems have advantages over their light-emitting-diode-based counterparts, including having high transmission speed and long transmission distance. We summarize terminologies related to laser-based solid-state lighting and VLC, and further review the advances in device design and performance.The high-speed modulation characteristics of laser diodes and superluminescent diodes and the on-chip integration of optoelectronic components in the visible color regime, such as the high-speed integrated photodetector,are introduced. The modulation technology for laser-based white light communication systems and the challenges for future development are then discussed.
作者 Yujian Guo Omar Alkhazragi Chun Hong Kang Chao Shen Yuan Mao Xiaobin Sun Tien Khee Ng Boon S.Ooi 郭予健;欧码;江隽宏;沈超;毛渊;孙晓斌;伍田祺;黄文秀(Photonics Laboratory, King Abdullah University of Science and Technology (KAUST))
机构地区 Photonics Laboratory
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2019年第4期19-33,共15页 中国光学快报(英文版)
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