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Efficient holmium-doped solid-state lasers pumped by a Tm-doped silica fiber laser

机译:高效荷米掺杂的固态激光器被TM掺杂的二氧化硅光纤激光泵送

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We report on efficient operation of Ho:YAG and Ho:YLF lasers in-band pumped by a tunable Tm-doped silica fiber laser. The Tm-doped fiber laser could be tuned over 150 nm from ~1860 to 2010 nm with a relatively narrow linewidth (<0.5 nm) at output power levels in excess of 9 W with a high power stability (RMS < 1.5%). Using a simple standing-wave cavity configuration, >6.4 W of TEM_(oo) output was obtained from a Ho:YAG laser at 2.1 μm at the maximum incident pump power of 9.6 W at 1907 nm from the Tm fiber laser, corresponding to an optical-to-optical efficiency of 67%, and the slope efficiency with respect to incident pump power was 80%. For a similar resonator design, 4.8 W of output at 2.07 μm was generated from a Ho:YLF laser at an incident pump power of 9.4 W, corresponding to an optical conversion efficiency of 51%. The different levels of performance of the Ho:YAG and Ho:YLF are compared and their relative merits discussed. Using a simple ring resonator geometry and an acousto-optic modulator to enforce unidirectional operation, we have obtained 3.7 W of single-longitudinal-mode output from a Ho:YAG laser. The prospects for further improvement in performance and higher output power are discussed.
机译:我们报告了HO:YAG和HO:YLF激光器的有效操作,通过可调谐TM掺杂的二氧化硅光纤激光器泵送。 TM掺杂光纤激光器可以在〜1860至2010nm上以150nm调谐,在输出功率水平上具有相对窄的线宽(<0.5nm),其超过9W,功率稳定性高(RMS <1.5%)。使用简单的驻波腔配置,> 6.4W的TEM_(OO)输出是从HO:YAG激光器在1907nm的最大入射泵功率下,从TM光纤激光器的最大入射泵功率下获得2.1μm,对应于光学光学效率为67%,相对于入射泵功率的斜率效率为80%。对于类似的谐振器设计,从HO:YLF激光器以9.4W的入射泵功率产生4.8W,输出为2.07μm,对应于51%的光学转换效率。比较了不同级别的性能:YAG和HO:YLF,并讨论了它们的相对优点。使用简单的环形谐振器几何和声光调制器来强制执行单向操作,我们已经获得了来自HO:YAG激光的单纵模输出的3.7W。讨论了进一步提高性能和更高产出功率的前景。

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