垂直腔面发射激光器(VCSEL)的研究进展
Research Progress of VCSEL
DOI: 10.12677/OE.2017.72008, PDF, HTML, XML, 下载: 3,337  浏览: 9,146 
作者: 王阳*, 崔碧峰, 房天啸:北京工业大学信息学部,省部共建光电子技术教育部重点实验室,北京
关键词: VCSEL大功率应用阵列VCSEL High Power Application Array
摘要: 通过对近几年研究单位报道的VCSEL的研究成果以及目前各大公司的商用VCSEL产品进行分析总结,重点介绍了VCSEL的商用产品以及研究领域其性能优化情况,综述了近几年VCSEL的研究进展。
Abstract: This paper gives an introduction to the progress of VCSEL mainly including the VCSEL commercial products and performance optimization of research area in recent years based on overall review of recent research reports for the VCSEL and the commercial VCSEL products of major companies.
文章引用:王阳, 崔碧峰, 房天啸. 垂直腔面发射激光器(VCSEL)的研究进展[J]. 光电子, 2017, 7(2): 50-57. https://doi.org/10.12677/OE.2017.72008

参考文献

[1] http://www.c-fol.net/m/
[2] http://www.princetonoptronics.com/applications/
[3] Watkins, L., et al. (2015) High-Power Vertical-Cavity Surface-Emitting Lasers for Atomic Clock Applications. SPIE.
[4] http://vixarinc.com/products/standardproducts.html
[5] http://www.laserenterprise.com/VCSELs/vcsel.html
[6] https://www.finisar.com/products/search-part-number-or-name?text=VCSEL
[7] http://www.photonics.philips.com/application-areas
[8] http://www.c-fol.net/m/news/view.php?id=20170302152339&from=singlemessage&isappinstalled=0
[9] Zhang, J., et al. (2014) High-Peak-Power Vertical-Cavity Surface-Emitting Laser Quasi-Array Realized Using Optimized Large-Aperture Single Emitters. Japanese Journal of Applied Physics, 53, Article ID: 070303.
[10] 高世杰, 等. 980nm高峰值功率微型化VCSEL脉冲激光光源[J]. 红外与毫米波学报, 2016, 35(5): 579-583.
[11] 张金胜, 等. 高峰值功率808nm垂直腔面发射激光器列阵[J]. 发光学报, 2014, 35(9): 1099-1103.
[12] Moench, H., et al. (2014) Optimized VCSELs for High Power Arrays. Proceedings of SPIE, 9001, 90010F-1-90010F- 8.
[13] 张星, 等. 894nm高温垂直腔面发射激光器及其芯片级铯原子钟系统的应用 [J]. 物理学报, 2016, 65(13): 134204-1-134204-7.
[14] Yazdanypoor, M. and Emami, F. (2014) High Power Single Mode Multi-Oxide Layer VCSEL with Optimized Thicknesses and Aperture Sizes of Oxide Layers. Journal of the Optical Society of Korea, 18, 167-173.
https://doi.org/10.3807/JOSK.2014.18.2.167
[15] Yang, X., et al. (2015) Small-Sized Lithographic Single-Mode VCSELs with High Power Conversion Efficiency. Proceedings of SPIE, 9381, 93810R-1-93810R-6.
[16] Yang, X., et al. (2014) Oxide-Free Vertical-Cavity Surface-Emitting Lasers with Low Junction Temperature and High Drive Level. Electronics Letters, 50, 1474-1475.
https://doi.org/10.1049/el.2014.2626
[17] 冯源, 等. 新型垂直腔面发射激光器的研制[J]. 半导体器件, 2014, 39(11): 831-835.
[18] Chi, K.-L., et al. (2014) Single-Mode 850 nm VCSELs Array with High-Power, Single-Lobe Pattern, and Narrow Divergence Angle. CLEO,.
[19] Aoki, Y., et al. (2014) 200-W Operation of an Ion-Implanted Vertical-Cavity Surface-Emitting Laser Array. IEEE Journal of Quantum Electronics, 50, 510-514.
https://doi.org/10.1109/JQE.2014.2323055
[20] 蔡丽娥, 等. GaN基蓝光VCSEL的制备及光学特性[J]. 发光学报, 2016, 37(4): 452-456.
[21] Lu, H.-H., et al. (2017) A 56 Gb/s PAM4 VCSEL-Based LiFi Transmission with Two-Stage Injection-Locked Technique. IEEE Photonics Journal, 9, Article No. 7900208.
[22] 张岩, 等. 795nm单模垂直腔面发射激光器[J]. 半导体器件, 2017, 42(1): 17-22.