Comparison of three methods reducing the beam parameter product of a laser diode stack for long range laser illumination applications

Y. Lutz, J. Poyet, N. Metzger
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引用次数: 2

Abstract

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 well suited for long-range image recording. Even when laser diode stacks are equipped with fast-axis collimation (FAC) and slow-axis collimation (SAC) microlenses, their beam parameter product (BPP) are not compatible with a direct use in highly efficient and compact illuminators. This is particularly true when narrow divergences are required such as for long range applications. To overcome these difficulties, we conducted investigations in three different ways. A first near infrared illuminator based on the use of conductively cooled mini-bars was designed, realized and successfully tested during outdoor experimentations. This custom specified stack was then replaced in a second step by an off-the-shelf FAC + SAC micro lensed stack where the brightness was increased by polarization overlapping. The third method still based on a commercial laser diode stack uses a non imaging optical shaping principle resulting in a virtually restacked laser source with enhanced beam parameters. This low cost, efficient and low alignment sensitivity beam shaping method allows obtaining a compact and high performance laser diode illuminator for long range active imaging applications. The three methods are presented and compared in this paper.
远距离激光照明中减小激光二极管堆光束参数积的三种方法的比较
激光二极管堆叠是有源成像照明器的一种有趣的激光源。它们允许在多脉冲模式下积累大量能量,这非常适合远距离图像记录。即使激光二极管阵列配备了快轴准直(FAC)和慢轴准直(SAC)微透镜,其光束参数产品(BPP)也不能直接用于高效紧凑的照明器中。当需要较窄的散度时,例如长距离应用,这一点尤其正确。为了克服这些困难,我们通过三种不同的方式进行了调查。设计、实现了第一台基于导冷小棒的近红外照明器,并在室外实验中成功测试。然后,在第二步中,这个定制的指定堆栈被现成的FAC + SAC微透镜堆栈所取代,其中通过偏振重叠来增加亮度。第三种方法仍然基于商用激光二极管堆叠,使用非成像光学整形原理,产生具有增强光束参数的虚拟叠置激光源。这种低成本,高效和低对准灵敏度光束整形方法允许获得一个紧凑和高性能的激光二极管照明的远程主动成像应用。本文对这三种方法进行了介绍和比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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