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Optical system design for small size laser ranging

机译:小型激光测距的光学系统设计

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The portable laser ranging system with semiconductor laser has the advantages of small size, light weight and so on, and has broad application prospect. However, as a core component, the semiconductor laser beam divergence angle is bigger, and the beam quality is poor. It can't meet the requirements of laser ranging system directly; therefore, it is necessary to carry out the study on the beam shaping. In this paper, according to the requirement of laser ranging system, the author carries out the study of the beam quality of semiconductor laser, and has the simulation and analysis of the system using ZEMAX software. Initial divergent angles of a 905nm wavelength semiconductor laser at fast axis and slow axis were 30° and 15° respectively. After the plastic, the divergent angles at fast axis and slow axis are 2° and 4° respectively, and energy loss is about 25%.
机译:具有半导体激光器的便携式激光测距系统具有体积小,重量轻等优点,具有广阔的应用前景。然而,作为核心部件,半导体激光束发散角较大,并且光束质量较差。不能直接满足激光测距系统的要求;因此,有必要对波束成形进行研究。本文根据激光测距系统的要求,对半导体激光器的光束质量进行了研究,并使用ZEMAX软件对该系统进行了仿真和分析。 905nm波长半导体激光器在快轴和慢轴处的初始发散角分别为30°和15°。塑化后,快轴和慢轴的发散角分别为2°和4°,能量损失约为25%。

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