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1.1kW high efficiency LD pumped Nd:YAG laser

机译:1.1KW高效LD泵浦ND:YAG激光

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摘要

Recently, the development of multi-kW all solid-state lasers for industrial applications has been evaluated for the energy saving characteristics. We report the laser oscillator using the LD pumped slab Nd:YAG producing the highest efficiency onthe cooling condition of room temperature. The two-side pumping is generally used for realizing symmetrically distributed excitation and temperature in the crystal. However, there exist two demerits coming from the useless LD pump light which is notabsorbed in the slab. The first demerit is the fact that this light does not contribute to laser oscillation and the second one that the same light degrades the performances of LDs locating on the opposite side. We have eliminated these demerits byemploying the one-side pumping method in which LDs are located on one side of the slab and a highly reflecting mirror is located on the other side. Based on this concept, the LD pumped slab Nd:YAG laser has been developed using a 6×25×206mm{sup}3 slabcrystal. The average output power of 1109W and the peak output power of 4900W have been obtained with the optical efficiency of 40.6% and the electrical efficiency of 15.3% on the cooling condition of 299K.
机译:最近,为节能特性评估了多千瓦所有固态激光器的工业应用。我们使用LD泵浦板Nd报告激光振荡器:YAG在室温的冷却条件下产生最高效率。双侧泵送通常用于实现晶体中对称分布的激励和温度。然而,来自无用的LD泵浦光的两次缺点,该泵灯未被吸收在板坯中。第一次脱模是该光不会有助于激光振荡,并且相同的光降低在相对侧的LD的性能降低的第二个。我们已经消除了这些缺点通过拆开了一种侧泵送方法,其中LDS位于板坯的一侧,并且高反射镜位于另一侧。基于该概念,LD泵浦板Nd:YAG激光器已经使用6×25×206mm {sup} 3斜率开发。 1109W的平均输出功率和4900W的峰值输出功率已经获得,光学效率为40.6%,电效率为299K的冷却条件为15.3%。

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