Single-Mode VCSEL Transmission for Short Reach Communications

Single-mode VCSEL technology has advanced significantly in the past few years. The advantages of single-mode VCSELs lie primarily on the narrower linewidth, lower numerical aperture, and smaller spot size compared to multimode VCSELs. They are suitable for transmitting over both multimode fibers and...

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Veröffentlicht in:Journal of lightwave technology 2021-02, Vol.39 (4), p.868-880
Hauptverfasser: Li, Ming-Jun, Li, Kangmei, Chen, Xin, Mishra, Snigdharaj K., Juarez, Adrian A., Hurley, Jason E., Stone, Jeffery S., Wang, Chia-Hsuan, Cheng, Hao-Tien, Wu, Chao-Hsin, Kuo, Hao-Chung, Tsai, Cheng-Ting, Lin, Gong-Ru
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Sprache:eng
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Zusammenfassung:Single-mode VCSEL technology has advanced significantly in the past few years. The advantages of single-mode VCSELs lie primarily on the narrower linewidth, lower numerical aperture, and smaller spot size compared to multimode VCSELs. They are suitable for transmitting over both multimode fibers and few-mode fibers. For multimode fiber systems, the narrow linewidth can reduce the chromatic dispersion penalty and increase the system reach. A single-mode VCSEL also allows the coupling into graded-index single-mode fiber, which is few-mode around 850 nm with high bandwidth, for few-mode transmission. We review recent progress and present new experimental results and modeling analyses of single-mode VCSEL transmission over both types of fibers. The experiments and analyses shed new light on how single-mode VCSELs can be used with multimode fibers and graded-index single-mode fibers and relative merits between 850 nm single-mode VCSELs versus 980 nm and 1060 nm single-mode VCSELs to address the needs of various applications.
ISSN:0733-8724
1558-2213
DOI:10.1109/JLT.2020.3028972