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2.08 µm Ho:KLu(WO4)2 laser resonantly pumped by a diode laser

机译:二极管激光器共振泵浦的2.08 µm Ho:KLu(WO 4 2 激光器

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Infrared solid-state lasers based on the Ho3+ (Ho) ion operating slightly above 2 µm have potential applications in the fields of medicine, remote sensing and as pump sources for OPOs. A serious limitation with regard to all-solid-state systems is that the Ho ion does not exhibit suitable absorption features that match the existing commercial diodes and hence many researchers used Tm as sensitizer. However, up-conversion losses in the Tm ions lead to poor efficiency of the 5I75I8 transition in Ho. On the contrary, direct excitation of the 5I7 level of Ho around 1.9 µm offers advantages to achieve higher efficiencies and higher output powers due to minimal thermal load. This is the ultimate solution for power scaling of Ho lasers [1]. Many fluoride and oxide crystals were shown to be suitable as Ho hosts but little attention was paid to the monoclinic double tungstates with general formula KRE(WO4)2 (KREW) where RE=(Y, Gd, Lu), known as very efficient laser hosts at intermediate power levels [2]. In this work we demonstrate continuous-wave (CW) laser action of Ho in KLuW crystal near 2.08 µm at room temperature using in-band pumping by recently developed laser diodes operating in the 1.9 µm range. The laser performance is compared with the other members of the same family of crystals.
机译:基于Ho 3 + (Ho)离子工作在2 µm以上的红外固态激光器在医学,遥感和OPO泵浦领域具有潜在的应用。关于全固态系统的一个严重限制是,Ho离子没有展现出与现有商用二极管匹配的合适吸收特性,因此许多研究人员将Tm用作敏化剂。但是,Tm离子中的上转换损失导致 5 I 7 5 I 8 在何过渡。相反,直接激励Ho的 5 I 7 能级约为1.9 µm,这是由于最小的热负载而带来的更高效率和更高输出功率的优势。这是Ho激光器功率缩放的最终解决方案[1]。研究表明,许多氟化物和氧化物晶体都适合作为Ho的主体,但对通式KRE(WO 4 2 (KREW)的单斜双钨酸盐的关注却很少。 RE =(Y,Gd,Lu),是中等功率水平的高效激光主机[2]。在这项工作中,我们通过使用最新开发的工作在1.9 µm范围内的激光二极管进行带内泵浦,证明了室温下在2.08 µm附近的KLuW晶体中Ho的连续波(CW)激光作用。将激光性能与同一家族的其他晶体进行比较。

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