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基于像散与理想光源成像原理的高亮度半导体激光器光纤耦合设计方法
引用本文:欧翔,熊玲玲,张普,丁晓尘,贾书海,刘兴胜.基于像散与理想光源成像原理的高亮度半导体激光器光纤耦合设计方法[J].光子学报,2014,40(11):1718-1722.
作者姓名:欧翔  熊玲玲  张普  丁晓尘  贾书海  刘兴胜
作者单位:1. 西安交通大学 理学院,西安 710049;
2. 中国科学院西安光学精密机械研究所 瞬态光学与光子技术国家重点实验室, 西安 710119;
3. 西安炬光科技有限公司, 西安 710119
基金项目:中科院重大知识创新项目(No. Y024H91213)资助
摘    要:运用像散原理和理想光源成像原理,讨论了半导体激光器消像散设计.提出了一种基于消像散的高亮度半导体激光器光纤耦合系统的设计方法.以波长为808 nm,输出功率为10 W的半导体激光器的光纤耦合为例,给出了详细的计算方法和设计步骤.结果表明:采用该方法将半导体激光器光束耦合入数值孔径为0.22,芯径为50 μm的光纤中,耦合后输出功率为9.712 W,耦合效率为97.12%,功率密度为1.1224×106 W/cm2.该方法不仅原理简单,而且设计的耦合系统耦合效率高、体积小,具有较强的实用价值.

关 键 词:半导体激光器  消像散  成像  光纤耦合
收稿时间:2011-05-23

Design of High-brightness Fiber-coupled Diode Laser System Based on Astigmatism and Ideal Imaging Theories
OU Xiang,XIONG Ling-ling,ZHANG Pu,DING Xiao-chen,JIA Shu-hai,LIU Xing-sheng.Design of High-brightness Fiber-coupled Diode Laser System Based on Astigmatism and Ideal Imaging Theories[J].Acta Photonica Sinica,2014,40(11):1718-1722.
Authors:OU Xiang  XIONG Ling-ling  ZHANG Pu  DING Xiao-chen  JIA Shu-hai  LIU Xing-sheng
Institution:1. School of Science, Xi'an Jiaotong University, Xi'an 710049, China;
2. State Key Laboratory of Transient Optics &Photonics, Xi'an Institute of Optics &Precision Mechanics, Chinese Academy of Sciences, Xi'an 710119, China;
3. Xi'an Focuslight Technology Co., Ltd., Xi'an 710119, China
Abstract:A high-brightness fiber-coupled diode laser system is designed, based on the principle of astigmatism and ideal light source imaging theory. As an example, details of the calculation methods and design steps of the fiber coupled laser diode are given whose wavelength is 808 nm and output power is 10 W. Semiconductor laser beam can be coupled into the 50 μm core diameter optical fiber with a numerical aperture of 0.22. It is found that this fiber-coupled system has an output power of 9.712 W, a coupling efficiency of 97.12% and a power density of 1.1224×106 W/cm2. The proposed method is simple in principle, and the designed fiber-coupled system has high coupling efficiency, small size and strong practical value.
Keywords:Semiconductor lasers  Anastigmat  Imaging  Fiber coupling
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