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Beam-shaping of laser diode stack for uniform illumination by cylindrical micro-lenses

机译:激光二极管叠堆的光束整形,以通过圆柱微透镜均匀照明

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A novel beam-shaping method which obtains nearly uniform illumination for a high-power Laser Diode (LD) stack is introduced. Based on the properties of the angular distribution during the Gaussian beams propagate, a flat-topped beam profile can be achieved by the superposition of Multi-tilted Gaussian beams. Due to the theory above, the individual lensing techniques are introduced to shape the beams of the LD stack. Cylindrical lenses are used to control the divergence-angle of the output beams. By adjusting the offset of each cylindrical micro-lens, each output beam on the fast axis gains the different tilted emitting-angle. Meanwhile the beams on the slow axis are also shaped by a large cylindrical lens. Thus the beam-shaping optical system is designed to reconfigure the beams of a high power LD stack to form a Multi-tilted Gaussian beam shape for a 10°×10° field-angle illumination. The simulation results from ASAP software show that uniform illumination can be obtained in the far-field district. With the proper uniformity and high efficiency, the beam-shaping optical system we have proposed for high-power LD stacks can be well suitable for laser illuminator in laser active imaging and detecting system.
机译:介绍了一种新颖的光束整形方法,该方法可为大功率激光二极管(LD)堆栈获得几乎均匀的照明。基于高斯光束传播过程中角度分布的特性,可以通过多倾斜高斯光束的叠加来获得平顶光束轮廓。由于上述理论,引入了各种透镜技术来对LD叠层的光束进行整形。柱面透镜用于控制输出光束的发散角。通过调节每个柱面微透镜的偏移量,快轴上的每个输出光束都会获得不同的倾斜发射角度。同时,慢轴上的光束也由一个大的圆柱透镜成形。因此,光束整形光学系统设计用于重新配置高功率LD堆栈的光束,以形成用于10°×10°场角照明的多倾斜高斯光束形状。 ASAP软件的仿真结果表明,在远场区域可以获得均匀的照明。我们提出的用于大功率LD叠层的光束整形光学系统具有适当的均匀性和高效率,可以很好地适合于激光主动成像和检测系统中的激光照明器。

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