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Laser diode stack beam shaping for efficient and compact long-range laser illuminator design

机译:激光二极管叠层光束整形可实现高效紧凑的远程激光照明器设计

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摘要

Laser diode stacks are interesting laser sources for active imaging illuminators. They allow the accumulation of large amounts of energy in multi-pulse mode, which is best suited for long-range image recording. Even when the laser diode stacks are equipped with fast-axis collimation (FAC) and slow-axis collimation (SAC) micro-lenses, their beam parameter products BPP are not compatible with direct use in highly efficient and compact illuminators. This is particularly true when narrow divergences are required such as for long-range applications. A solution to overcome these difficulties is to enhance the poor slow-axis BPP by virtually restacking the laser diode stack. We present a beam shaping and homogenization method that is low-cost and efficient and has low alignment sensitivity. After conducting simulations, we have realized and characterized the illuminator. A compact long-range laser illuminator has been set up with a divergence of 3.5 × 2.6 mrad and a global efficiency of 81%. Here, a projection lens with a clear aperture of 62 mm and a focal length of 571 mm was used.
机译:激光二极管堆栈是用于有源成像照明器的有趣激光源。它们允许在多脉冲模式下积累大量能量,这最适合于远程图像记录。即使激光二极管堆栈配备了快轴准直(FAC)和慢轴准直(SAC)微透镜,其光束参数乘积BPP也不能直接用于高效紧凑型照明器中。当需要较窄的发散度(例如用于远程应用)时,尤其如此。克服这些困难的一种解决方案是通过虚拟堆叠激光二极管堆栈来增强不良的慢轴BPP。我们提出了一种低成本,高效且对准灵敏度较低的光束整形和均化方法。进行仿真后,我们已经实现并表征了照明器。已经建立了紧凑的远程激光照明器,其发散度为3.5×2.6 mrad,全球效率为81%。在此,使用具有62mm的净孔径和571mm的焦距的投影透镜。

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