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Circular output from a high power Nd:YLF slab laser

机译:大功率Nd:YLF平板激光器的圆形输出

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摘要

Neodymium-doped Yttrium Lithium Fluoride (YLF) lasers have traditionally been power-limited by the relatively low tensile strength of the crystal. When power-scaling solid-state lasers, the choice of the gain media geometry, the doping level, and the pumping scheme is dictated by minimizing the impact of thermally induced stress. To date the slab architecture has been the most successful for scaling the average-power of Nd:YLF lasers due to its favorable thermal management. However, for efficient high-radiance laser action it is also necessary to have a good overlap between the cavity mode and the planar gain volume. We present the performance characteristics for an end-pumped slab-laser utilizing a stable low-loss resonator configuration that transforms a circular cavity mode at the output coupler into a very high aspect ratio elliptical beam in the slab gain element to match the pumped volume. The optical arrangement for transforming the beam shape is also suitable for a double-pass slab amplifier configuration. A polarized CW output power of 50W, on the weaker Nd:YLF 1053nm transition was obtained with a single slab gain element and 110W of incident pump power from three spatially multiplexed diode bars. Laser threshold was around 7W and the slope efficiency, with respect to incident power, 46%.
机译:传统上,掺钕钕氟化锂(YLF)激光器的功率受到晶体相对较低的拉伸强度的限制。对固态激光器进行功率缩放时,增益介质几何形状,掺杂水平和泵浦方案的选择是通过使热应力的影响最小化来决定的。迄今为止,由于其良好的热管理,平板结构在缩放Nd:YLF激光器的平均功率方面最成功。然而,为了有效的高辐射激光作用,还必须在腔模和平面增益体积之间具有良好的重叠。我们介绍了利用稳定的低损耗谐振器配置的端泵平板激光器的性能特征,该配置将输出耦合器上的圆形腔模式转换为平板增益元件中非常高的长宽比椭圆光束,以匹配泵浦的体积。用于变换光束形状的光学装置也适用于双通道平板放大器配置。在一个较弱的Nd:YLF 1053nm跃迁上获得了50W的极化CW输出功率,这是通过一个平板增益元件和110W入射泵浦功率从三个空间复用二极管棒获得的。激光阈值约为7W,相对于入射功率的斜率效率为46%。

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