首页> 外文会议>Conference on High-Power Diode Laser Technology and Applications; 20080121-23; San Jose,CA(US) >Beam shaping of high power diode lasers benefits from asymmetrical refractive micro-lens arrays
【24h】

Beam shaping of high power diode lasers benefits from asymmetrical refractive micro-lens arrays

机译:高功率二极管激光器的光束整形得益于非对称折射微透镜阵列

获取原文
获取原文并翻译 | 示例

摘要

Micro-lens arrays are widely used for beam shaping, especially beam homogenization of various laser sources. Monolithic arrays of cylindrical lenslets made of glass, semiconductors or crystals provide great advantages in laser applications, e.g. high efficiency, intensity stability and very low absorption. However, up to now, mainly symmetrical micro-lens surfaces are utilized in most applications due to design and manufacturing restrictions. The manufacture and application benefits of asymmetrical cylindrical-like micro-lens surfaces are enabled by LIMO's unique production technology. The asymmetrical shape is defined by uneven-polynomial terms and/or an asymmetrical cut-off from an even polynomial surface. Advantages of asymmetrical micro-lenses are off-axis light propagation, the correction of aberration effects or intensity profile deformations when the illuminated surfaces are not orthogonal to the optical axis. Additionally, the opportunities in simultaneous illumination from numerous light sources to one target are extended by just geometrical arrangement without the need for collinear beam alignment. First application results of such micro-lens arrays are presented for beam shaping of high power diode lasers. The generation of a homogeneous light field by a 100 W laser with tilted illumination at an angle of 35° is shown. A multi-kW line generator based on the superposition of over 50 diode laser bars under different illumination angles is demonstrated as well. Thus, laser material processing like plastics welding, soldering or annealing becomes much more convenient and less demanding regarding beam steering.
机译:微透镜阵列广泛用于光束整形,尤其是各种激光源的光束均化。由玻璃,半导体或晶体制成的圆柱形小透镜的单片阵列在激光应用中提供了很大的优势,例如激光。高效率,强度稳定性和极低的吸收率。但是,到目前为止,由于设计和制造的限制,在大多数应用中主要使用对称的微透镜表面。 LIMO独特的生产技术可实现非对称圆柱状微透镜表面的制造和应用优势。不对称形状由不均匀多项式项和/或从平坦多项式表面的不对称截断定义。非对称微透镜的优点是轴外光传播,当被照射表面不垂直于光轴时校正像差效应或强度轮廓变形。另外,从多个光源到一个目标的同时照明的机会仅通过几何布置就得以扩展,而无需共线光束对准。提出了这种微透镜阵列用于高功率二极管激光器的光束整形的首次应用结果。示出了通过倾斜角度为35°的100 W激光器产生的均匀光场。还展示了基于在不同照明角度下叠加50多个二极管激光棒的多千瓦线发生器。因此,激光材料加工(例如塑料焊接,软焊或退火)变得更加方便,对光束控制的要求也降低了。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号