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High efficient cryogenically-cooled Yb:YAG Active-Mirror laser using Total-Reflection geometry

机译:高效低温冷却YB:使用总反射几何的YAG主动镜激光器

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we proposed a novel oscillator configuration called "TRAM" (Total-Reflection Active-Mirror) laser with a cryogenically cooled (under 100 K) Yb:YAG. We reported on TRAM laser experiments using a composite all-ceramics Yb:YAG, with no high-reflection coating and was directly cooled with liquid nitrogen. The obtained output power was 273 W with a slope efficiency of 72%, which to the best of our knowledge is the highest slope efficiency reported for high power laser systems from a 400 mum-thick Yb:YAG ceramic. For a laser diode spot size of 6 mm, the output power increased linearly over the whole diode pump power range. In this work, we investigated the limitation of the pump density for 180 mum, 400 mum, and 600 mum-thick Yb:YAG samples.
机译:我们提出了一种名为“电车”(总反射有源镜)激光的新型振荡器配置,具有低温冷却(在100K)Yb:YAG下。我们在电车激光实验中使用复合物全陶瓷Yb:YAG报道,没有高反射涂层,并用液氮直接冷却。所获得的输出功率为273W,斜率效率为72%,这是我们知识的最佳斜率效率,是来自400毫米厚的YB:YAG陶瓷的高功率激光系统的最高坡度效率。对于激光二极管点尺寸为6mm,输出功率在整个二极管泵功率范围内线性增加。在这项工作中,我们调查了泵密度为180毫米,400米和600毫米厚YB:YAG样品的限制。

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