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Micrograting-array beam-shaping technique for asymmetrical laser beams

机译:非对称激光束的微光栅阵列整形技术

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摘要

A beam-shaping technique is presented for asymmetrical laser beams with different beam waists and divergences in both vertical and horizontal directions. We utilize a pair of two-dimensional micrograting arrays to equalize the beam parameter products of an asymmetrical beam in orthogonal directions by deflecting the appointed parts of the beam on the longer side of the beam and by recombining the parts on the shorter side. When combined with divergent transformation by means of collimating optical components, the beam-shaping system can produce a symmetrical beam in orthogonal directions with optimized beam waists and divergences. A beam-equalization system is designed and demonstrated for a typical asymmetrical beam of a laser diode bar. In the experiment an emission beam with dimensions of 1 μm×10 mm and half-divergences of 148 mrad×576 mrad in the far field is transformed into an almost-square distribution with dimensions of ~12 mm×12 mm and half-divergences of ~2 mrad×2 mrad, which confirm the effectiveness of the proposed technique.
机译:提出了一种光束整形技术,用于不对称的激光束,在垂直和水平方向上具有不同的束腰和发散角。我们利用一对二维微光栅阵列,通过在光束的较长侧偏转光束的指定部分并在较短侧重新组合光束,使非对称光束在正交方向上的光束参数乘积相等。当通过准直光学组件与发散变换结合使用时,光束整形系统可以在正交方向上产生对称光束,并具有最佳的光束腰部和发散度。设计并演示了光束均衡系统,用于激光二极管棒的典型非对称光束。在实验中,发射光束的尺寸为1μm×10 mm,在远场的半散度为148 mrad×576 mrad,被转换为尺寸约为〜12 mm×12 mm的半方形分布,其半散度为。 〜2 mrad×2 mrad,证实了所提技术的有效性。

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