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Cylindrical microlenses for collimating high-power diode lasers

机译:圆柱微透镜,用于准直大功率二极管激光器

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Abstract: Monolithic linear arrays of diode lasers, also known as diode laser bars, are the basic elements for most high-power laser applications such as solid-state laser pumping or material processing. Cylindrical microlenses used as fast- axis collimators for 10-mm diode bars require very high angles of aperture (up to 100 degree FW1/e2, equivalent to a numerical aperture of approx. 0.8) to capture most of the emitted laser power. For the efficient longitudinal pumping of laser rods, or the narrow focusing of the diode laser radiation (fiber coupling, material processing), high- quality microlenses with small lens aberrations are necessary to avoid power losses and beam quality degradation. In this paper, lens design considerations are presented together with alignment tolerances and the variation of the collimated beam parameters. Measuring methods for the lens characterization are discussed. Manufacturing techniques are summarized, and the performance of microlenses is measured by the beam width and divergence of the collimated diode laser beam.!13
机译:摘要:二极管激光器的单片线性阵列,也称为二极管激光棒,是大多数高功率激光应用的基本元件,如固态激光泵送或材料处理。用作10 mm二极管条的快速准直器的圆柱形微透镜需要非常高的孔角(最多100度FW1 / E2,相当于约0.8)以捕获大部分发射的激光功率。对于激光棒的有效纵向泵送,或者二极管激光辐射的窄聚焦(光纤耦合,材料处理),具有小镜头像差的高质量微透镜是必要的,以避免功率损耗和光束质量劣化。在本文中,透镜设计考虑与对准公差以及准直光束参数的变化一起呈现。讨论了镜头表征的测量方法。总结了制造技术,并通过准直的二极管激光束的光束宽度和发散来测量微透镜的性能。!​​13

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