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880nm半导体激光主动照明光纤耦合模块
引用本文:王祥鹏,彭航宇,李再金,王立军.880nm半导体激光主动照明光纤耦合模块[J].强激光与粒子束,2010,22(7).
作者姓名:王祥鹏  彭航宇  李再金  王立军
作者单位:1. 中国科学院 长春光学精密机械与物理研究所 激发态实验室, 长春 130033; 2中国科学院 研究生院, 北京 100039
基金项目:中国科学院长春光学精密机械与物理研究所三期创新工程项目,吉林省与中国科学院院地合作项目,科技部国际合作项目,吉林省省长基金,中国科学院知识创新工程领域前沿项目 
摘    要:为降低半导体激光主动照明红曝,选择波长880 nm大功率半导体激光器作为新型激光主动照明成像系统光源。根据光纤耦合过程光参数积不变原理,研制出波长880 nm大功率半导体激光器阵列单光纤耦合模块,利用光纤匀光作用使激光光束匀化整圆后用于激光主动照明。首次在波长880 nm大功率半导体激光器上采用阶梯反射镜光束整形方法,使激光光参数积与光纤匹配,激光高效耦合进入纤芯400μm、数值孔径0.22的光纤。室温条件下光纤耦合模块连续输出功率44.9 W,电光转化效率35%,波长880 nm大功率半导体激光器阵列光纤耦合模块,不仅其红曝小而且对应CMOS图像传感器光谱响应度较高,系统成像质量好。

关 键 词:半导体激光器阵列  波长880  nm激光  激光主动照明  光束整形  阶梯镜
收稿时间:1900-01-01;

880 nm high-power fiber-coupled diode laser module for active illumination
Wang Xiangpeng,Peng Hangyu,Li Zaijin,Wang Lijun.880 nm high-power fiber-coupled diode laser module for active illumination[J].High Power Laser and Particle Beams,2010,22(7).
Authors:Wang Xiangpeng  Peng Hangyu  Li Zaijin  Wang Lijun
Institution:1. Key Laboratory of Excited State Processes, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China; 2. Graduate School of Chinese Academy of Sciences, Beijing 100039, China
Abstract:Near-infrared laser diode arrays (LDA) are usually utilized as illuminated source for active laser illumination technology. The severe red exposure of 808nm LDA deteriorates its potential for military application. Due to the low response of CMOS to light beyond 900nm, LDA with 880nm wavelength is a good candidate for active laser illumination. The 880 nm LDA has been chosen as a new type of laser active illumination source. As the beam of the high-power LDA has large divergence and uneveness, the 880 nm LDA can not be used directly for active illumination. Thus high power 880 nm fiber-coupled diode lasers have been developed with a pair of micro step-mirrors for beam shaping. As a result, output power about 44.9 W of the fiber-coupled laser diode module is achieved, and electro-optical con
Keywords:880 nm wavelength laser  laser active illumination  beam-shaping  step-mirror
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