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High-efficiency high-power diode laser beam shaping and focusing with constant optical-path length equalization

机译:具有恒定光程长度均衡的高效大功率二极管激光束整形和聚焦

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In this work we report on a novel optical design for beam shaping and focalization of high-power diode laser bars. The goals of our study are: the increase the optical throughput of the beam shaping device with respect to standard solutions and either to enhance the irradiance on a target or to inject the laser beam into a smaller fibre than with respect to beam shaping system based on plane surfaces. The high power diode laser bars pose serious difficulties in their optical handling due to their strong difference between the two transverse axes, which induce a strong astigmatic and asymmetric output radiation. As is well known, the beam quality is very different in the two axes called slow axis and fast axis, and in particular the slow axis is composed by the superposition of several multimodal sources. The beam quality in this axis is very low (its etendue may exceed 2000 mm mrad). On the other hand, the fast axis has a very high beam quality, near diffraction limited, although with very high divergence (30° - 50°). The common solution for the application of the laser radiation is a fast axis aspheric micro lens in front of the emitters, in order to achieve its collimation. Typical values of the fast axis collimated beam are 0.7mm and less than 6mrad. However, the so obtained collimated beam is poorly focusable with a standard lens, and a few methods were proposed to overcome the problem. The more relevant solutions include: the stepped mirror technique, the plane parallel mirrors pair, micro prisms array and confocal micro lens array. Each of these techniques is based on the equalization of the beam parameter product by the subdivision of the beam in the slow axis and its reshaping. For all these techniques the efficiency spans from 50% to 70%. The best focalization results allow the coupling in a fiber of 400um diameter, with NA=0.22.
机译:在这项工作中,我们报告了一种用于大功率二极管激光棒的光束整形和聚焦的新型光学设计。我们研究的目标是:与标准溶液相比,相对于标准溶液,提高光束整形装置的光通量;或者提高目标上的辐照度;或者将激光束注入到较小的光纤中。平面。高功率二极管激光棒由于其两个横向轴之间的强烈差异而在光学处理上造成了严重困难,这会引起强烈的像散和不对称输出辐射。众所周知,光束质量在称为慢轴和快轴的两个轴上是非常不同的,特别是慢轴是由几个多模态源的叠加组成的。该轴上的光束质量非常低(其光学扩展量可能超过2000 mm mrad)。另一方面,快轴具有非常高的光束质量,接近衍射极限,尽管发散度很高(30°-50°)。施加激光辐射的常见解决方案是在发射器前面安装一个快轴非球面微透镜,以实现准直。快速轴准直光束的典型值为0.7mm且小于6mrad。然而,如此获得的准直光束在标准透镜下聚焦性差,并且提出了几种方法来克服该问题。更相关的解决方案包括:阶梯镜技术,平面平行镜对,微棱镜阵列和共焦微透镜阵列。这些技术中的每一种均基于通过将光束细分为慢轴及其整形来对光束参数乘积进行均衡。对于所有这些技术,效率范围从50%到70%。最佳的聚焦结果允许耦合在直径为400um的光纤中,NA = 0.22。

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