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High-power slab-based Tm:YLF laser for in-band pumping of Ho:YAG

机译:基于大功率平板的Tm:YLF激光器,用于Ho:YAG带内泵浦

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Several remote sensing applications require pulsed sources in the mid-infrared spectral regime with high average powers and good beam quality. Ho:YAG lasers have a number of attractive features for high power generation at 2.1microns, either for direct applications or as a pump source for parametric conversion to longer infra-red wavelengths. Unfortunately, direct diode pumping of Ho:YAG is not practical, so a two-step process is generally employed in which one or more diode-pumped thulium-doped lasers are used to directly pump (in-band) the Ho:YAG laser. In response, we have investigated a slab-based architecture for scaling the output power of a Tm:YLF laser to the 100W power regime at 1.91microns, corresponding to a strong Ho:YAG absorption line. Multiple slab lasers with moderate beam quality in the plane of the slab can be combined to efficiently end-pump a low-doping concentration Ho:YAG rod in a pump-guided configuration. In a preliminary demonstration, two 2at.% doped Tm:YLF slab lasers with a spatially multiplexed output of 74W were employed to end-pump a 1.5mm diameter, 80mm long, 0.25at.% Ho:YAG barrel-polished rod. A two-mirror plano-concave cavity, with 11% output coupling transmission, produced a CW output of 38W with a slope efficiency of 60% with respect to the incident power. Q-switched operation at a repetition rate of 20Hz with two intra-cavity Brewster plate polarizers and a 60% transmitting output coupler produced 14mJ pulses with a pulse duration (FWHM) of 18ns. This architecture offers an attractive route for future high-power 2micron lasers.
机译:几种遥感应用需要在中红外光谱范围内具有高平均功率和良好光束质量的脉冲源。 Ho:YAG激光器具有许多吸引人的特征,可用于2.1微米的高功率产生,既可直接应用,也可作为泵浦光源用于将参数转换为更长的红外波长。不幸的是,Ho:YAG的直接二极管泵浦是不切实际的,因此通常采用两步过程,其中一个或多个二极管泵浦th掺杂激光器用于直接泵浦(带内)Ho:YAG激光器。作为响应,我们研究了一种基于平板的体系结构,用于将Tm:YLF激光器的输出功率缩放到1.91微米的100W功率范围,这对应于很强的Ho:YAG吸收线。可以组合在平板平面内具有中等光束质量的多个平板激光器,以在泵引导配置中有效地对低掺杂浓度的Ho:YAG棒进行端泵。在初步演示中,使用了两个2at。%掺杂的Tm:YLF平板激光器,它们在空间上的输出功率为74W,对1.5mm直径,80mm长,0.25at。%的Ho:YAG桶抛光棒进行了端面泵浦。具有11%输出耦合传输的双镜平凹腔产生38W的CW输出,相对于入射功率的斜率效率为60%。使用两个腔内布鲁斯特板偏振器和60%传输输出耦合器以20Hz的重复频率进行Q开关操作,产生14mJ脉冲,脉冲持续时间(FWHM)为18ns。这种架构为未来的高功率2微米激光器提供了一条诱人的途径。

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