高功率、高亮度105微米光纤耦合蓝色激光二极管模块(会议报告)

M. Riva, G. Rossi, F. Pescarmona, A. Braglia, G. Perrone
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引用次数: 2

摘要

高效激光加工高反射材料,如铜和金,需要比目前用于高功率工业应用的波长更短的波长,蓝色是最佳选择。然而,目前可用的蓝色激光芯片的有限功率对将功率扩展到所需的数百瓦同时保持尽可能高的光束质量提出了重要挑战。本文提出了一种正在申请专利的新专利架构,该架构允许在TO9封装中使用市售的高功率激光器实现世界纪录的蓝色激光亮度。开发的架构是基于单一发射器,以获得最佳的灵活性和可靠性,这些发射器沿着快速轴错开排列;然后,每一行可以与其他行并排放置,以便沿着慢轴进行空间复用。优化后的设计给出了基于3排共36个发射器的最终架构,这些发射器可以耦合到105 μ m / 0.22 NA中。利用极化多路复用技术并使用市上可用的3.5 W二极管,可以在105 μ m / 0.22 NA的光纤中获得220 W的耦合功率,达到150 GW/(ster m2)的创纪录亮度。在精确的设计阶段之后,一些原型被制造出来并进行了表征。会议将介绍详细的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-power and brightness 105-micron fiber coupled blue laser diode modules (Conference Presentation)
Efficient laser processing of high reflective materials, such as copper and gold, requires shorter wavelengths than those currently used for high power industrial applications, with blue being the optimal choice. However, the limited power of currently available blue laser chips poses important challenges in scaling the power to the required hundreds of watts while preserving the highest possible beam quality. The paper presents a new proprietary patent-pending architecture that allows achieving world record blue laser brilliance using commercially available high power lasers in TO9 package. The developed architecture is based on single emitters for best flexibility and reliability, which are organized in rows staggered along the fast axis; each row can then be placed side by side to other rows in order to spatially multiplex also along the slow axis. The optimized design gave a final architecture based on 3 rows for a total of 36 emitters that could be coupled into a 105 µm / 0.22 NA. Exploiting also polarization multiplexing and using commercially available 3.5 W diodes it is possible to obtain 220 W of coupled power into a 105 µm / 0.22 NA fiber, for a record brilliance of 150 GW/(ster m2). Following an accurate design phase some prototypes have been fabricated and characterized. Detailed results are presented at the Conference.
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