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Innovative High-Power CW Yb:YAG Cryogenic Laser

机译:创新的高功率连续波Yb:YAG低温激光器

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摘要

In this paper we discuss a CW Yb:YAG cryogenic laser program that has resulted in the design and demonstration of a novel high power laser. Cryogenically-cooled crystalline solid-state lasers, and Yb:YAG lasers in particular, are attractive sources of scalable CW output power with very high wallplug efficiency and excellent beam-quality that is independent of the output power. This laser consists of a distributed array of seven highly-doped thin Yb:YAG-sapphire disks in a folded multiple-Z resonator. Individual disks are pumped from opposite sides using fiber-coupled ~30W 940nm pump diodes. The laser system we have constructed produces a near-diffraction-limited TEM_(00) output beam with the aid of an active conduction-cooling design. In addition, the device can be scaled to very high average power in a MOPA configuration, by increasing the number and diameter of the thin disks, and by increasing the power of the pump diodes with only minor modifications to the current design. The thermal and optical benefits of cryogenically-cooled solid-state lasers will be reviewed, scalability of our Yb:YAG cryogenic laser design will be discussed, and we will present experimental results including output power, slope and optical-optical efficiencies, and beam-quality.
机译:在本文中,我们讨论了CW Yb:YAG低温激光程序,该程序导致了新型高功率激光器的设计和演示。低温冷却的晶体固态激光器,尤其是Yb:YAG激光器,是具有可扩展的CW输出功率的诱人资源,具有很高的墙插效率和出色的光束质量,而与输出功率无关。该激光器由一个折叠的多Z谐振器中的七个高掺杂薄Yb:YAG蓝宝石圆盘的分布式阵列组成。使用〜30W 940nm光纤耦合泵浦二极管从相反的一侧泵浦各个磁盘。我们构建的激光系统借助主动传导冷却设计产生了近衍射极限的TEM_(00)输出光束。另外,通过增加薄盘的数量和直径,以及通过增加泵浦二极管的功率,可以对MOPA配置中的器件进行缩放,使其具有非常高的平均功率,而对当前设计的改动很小。本文将对低温冷却固态激光器的热学和光学优势进行回顾,并讨论我们的Yb:YAG低温激光器设计的可扩展性,并提供包括输出功率,斜率和光学效率以及光束强度在内的实验结果。质量。

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