首页> 外文会议>Semiconductor lasers and laser dynamics VI >Generating a high brightness multi-kilowatt laser by dense spectral combination of VBG stabilized single emitter laser diodes
【24h】

Generating a high brightness multi-kilowatt laser by dense spectral combination of VBG stabilized single emitter laser diodes

机译:通过VBG稳定的单发射器激光二极管的密集光谱组合生成高亮度多千瓦激光

获取原文
获取原文并翻译 | 示例

摘要

Generating high power laser radiation with diode lasers is commonly realized by geometrical stacking of diode bars, which results in high output power but poor beam parameter product (BPP). The accessible brightness in this approach is limited by the fill factor, both in slow and fast axis. By using a geometry that accesses the BPP of the individual diodes, generating a multi kilowatt diode laser with a BPP comparable to fiber lasers is possible. We will demonstrate such a modular approach for generating multi kilowatt lasers by combining single emitter diode lasers. Single emitter diodes have advantages over bars, mainly a simplified cooling, better reliability and a higher brightness per emitter. Additionally, because single emitters can be arranged in many different geometries, they allow building laser modules where the brightness of the single emitters is preserved. In order to maintain the high brightness of the single emitter we developed a modular laser design which uses single emitters in a staircase arrangement, then coupling two of those bases with polarization combination which is our basic module. Those modules generate up to 160 W with a BPP better than 7.5 mm~*mrad. For further power scaling wavelength stabilization is crucial. The wavelength is stabilized with only one Volume Bragg Grating (VBG) in front of a base providing the very same feedback to all of the laser diodes. This results in a bandwidth of < 0.5 nm and a wavelength stability of better than 250 MHz over one hour. Dense spectral combination with dichroic mirrors and narrow channel spacing allows us to combine multiple wavelength channels, resulting in a 2 kW laser module with a BPP better than 7.5 mm~*mrad, which can easily coupled into a 100 μm fiber and 0.15 NA.
机译:通常通过二极管棒的几何堆叠来实现用二极管激光器产生高功率激光辐射,这导致高输出功率但光束参数乘积(BPP)差。在这种方法中,可访问的亮度在慢轴和快轴上都受填充因子的限制。通过使用访问单个二极管BPP的几何形状,可以产生具有与光纤激光器相当的BPP的多千瓦二极管激光器。我们将演示通过组合单发射二极管激光器来产生多千瓦激光器的模块化方法。单发射器二极管具有优于条的优点,主要是简化的冷却,更好的可靠性和每个发射器更高的亮度。另外,由于单个发射器可以以许多不同的几何形状排列,因此它们允许在保留单个发射器的亮度的情况下构建激光器模块。为了保持单个发射器的高亮度,我们开发了一种模块化激光设计,该设计在楼梯布置中使用单个发射器,然后将其中两个基极与偏振组合耦合,这是我们的基本模块。这些模块产生的BPP高达7.5 mm〜* mrad时可产生高达160 W的功率。对于进一步的功率缩放,波长稳定至关重要。只需在基座前面安装一个体积布拉格光栅(VBG)即可稳定波长,从而为所有激光二极管提供完全相同的反馈。这样一来,带宽<0.5 nm,并且在一小时内的波长稳定性优于250 MHz。密集的光谱与二向色镜的结合以及狭窄的通道间隔使我们能够组合多个波长通道,从而产生了一个2 kW的激光模块,其BPP优于7.5 mm〜* mrad,可以轻松耦合到100μm光纤和0.15 NA。

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