Simulation and Experimental Research on a Beam Homogenization System of a Semiconductor Laser

均质化(气候) 光学 激光器 数值孔径 材料科学 光束发散 半导体激光器理论 半导体 分歧(语言学) 激光束 激光束质量 光电子学 物理 哲学 生物多样性 波长 生物 语言学 生态学
作者
Haijing Zheng,Huayan Sun,Huaili Zhang,Yingchun Li,Huichao Guo,Lai-xian Zhang,Rong Li,Qiang Yin
出处
期刊:Sensors [MDPI AG]
卷期号:22 (10): 3725-3725
标识
DOI:10.3390/s22103725
摘要

Aiming at the application of laser active imaging detection technology, this paper studied the beam homogenization system of a semiconductor laser based on a homogenizing pipe. Firstly, the principle of the homogenizing pipe was introduced. Secondly, the homogenization effect, which was influenced by several geometric parameters (aperture size, length, and taper) of the homogenizing pipe using the optical design software, was simulated for the fiber-coupled semiconductor laser. Finally, according to the simulated results, a laser illumination system composed of a fiber-coupled semiconductor laser, a homogenizing pipe, and an aspheric lens was designed, which can obtain a rectangular uniform light spot in a long distance. The effectiveness of the illumination system was verified by simulation and experiment, respectively. Simulation results suggested that the uniformity of the spot at a distance of 20 m was 85.6%, while divergence angle was 10 mrad. The uniformity of the spot at a distance of 120 m was 91.5%, while divergence angle was 10 mrad. Experimental results showed that the uniformity of the spot at a distance of 20 m was 87.7%, while divergence angle was 13 mrad. The uniformity of the spot at a distance of 120 m was 93.3%, while divergence angle was 15 mrad. The laser illumination system designed in this paper was simple and easy to assemble, and has strong practicability. The results in this paper have certain reference value and guiding significance for the homogenization design of semiconductor lasers.

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