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Micro-lens arrays for laser beam homogenization and transformation

机译:微透镜阵列用于激光束的均匀化和转换

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For many innovative applications a significant improvement in the homogeneity of the laser beam is a critical requirement when using semiconductor lasers. There are several different methods for the homogenization of laser radiation. Homogenization using micro-cylinder lens arrays is a considerably elegant and compact solution. In this case the incident laser beam is separated into partial beams by one or more micro-lens arrays. These partial beams are then overlaid in the homogenization plane by the downstream optics. Depending on the arrangement and geometry of the micro-lenses, this enables homogeneously illuminated lines, rectangles or squares to be generated. The major advantage of this solution lies in the increased freedom of adjustment to account for the initial beam profile, as well as the extremely compact design. In addition to a comparison of different homogenization principles the paper describes new approaches of homogenization via micro-lens arrays and compares the impact on the array performance by different manufacturing approaches.
机译:对于许多创新应用,使用半导体激光器时,激光束均匀性的显着提高是至关重要的要求。激光辐射的均质化有几种不同的方法。使用微柱面透镜阵列进行均质化是一种非常优雅且紧凑的解决方案。在这种情况下,入射激光束被一个或多个微透镜阵列分成部分光束。然后,这些分光束在下游的光学系统中叠加在均化平面中。取决于微透镜的布置和几何形状,这使得能够产生均匀照明的线,矩形或正方形。该解决方案的主要优点在于增加了调整的自由度,以适应初始光束轮廓以及极其紧凑的设计。除了比较不同的均质化原理外,本文还介绍了通过微透镜阵列进行均质化的新方法,并比较了不同制造方法对阵列性能的影响。

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