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Ytterbium Laser With Reduced Thermal Loading

机译:Loading激光器具有降低的热负荷

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摘要

We report a novel design for a high-power ytterbium disk laser. This laser utilizes radial diode pumping of a back surface cooled active-mirror geometry. Wing absorption of the pump light at 0.99 (mu)m allows efficient laser operation at 1.05 (mu)m with a low quantum defect. Laser performance and thermal loading were characterized for a wide range of conditions. Optimized operation of the laser yielded 490 W in a quasi-continuous-wave mode. Electrical efficiency of the laser was found to be 9.4percent, while heating of the laser disk was only 3.2percent of the absorbed optical power. Fluorescence re-absorption is identified as the principal heat generation mechanism in this laser. A simplified extension to the conventional rate model is proposed for lasing in radiation-trapped systems. This model allows power flow calculations in a radiation-trapped laser system using a single parameter determined from fluorescence decay waveforms. The revised model agrees with heat load measurements.
机译:我们报告了一种用于大功率盘激光器的新颖设计。该激光器利用背面冷却的有源镜几何形状的径向二极管泵浦。泵浦光在0.99μm处的翼状吸收使得在1.05μm处具有低量子缺陷的高效激光操作成为可能。激光性能和热负荷适用于各种条件。激光器的优化操作在准连续波模式下产生490W。激光的电效率为9.4%,而激光盘的发热仅为吸收光功率的3.2%。荧光再吸收被认为是该激光器的主要发热机理。提出了对常规速率模型的简化扩展,以用于辐射陷阱系统中的激光发射。该模型允许使用从荧光衰减波形确定的单个参数,在陷波激光系统中进行功率流计算。修改后的模型与热负荷测量结果一致。

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