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Low-threshold and high-efficiency solar-pumped laser with Fresnel lens and a grooved Nd: YAG rod

机译:具有菲涅耳透镜和带槽Nd:YAG棒的低阈值和高效太阳能泵浦激光器

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Sunlight is considered as a new efficient source for direct optical-pumped solid state lasers. High-efficiency solar pumped lasers with low threshold power would be more promising than semiconductor lasers with large solar panel in space laser communication. Here we report a significant advance in solar-pumped laser threshold by pumping Nd:YAG rod with a grooved sidewall. Two-solar pumped laser setups are devised. In both cases, a Fresnel lens is used as the primary sunlight concentrator. Gold-plated conical cavity with a liquid light-guide lens is used as the secondary concentrator to further increase the solar energy concentration. In the first setup, solar pumping a 6mm diameter Nd:YAG rod, maximum laser power of 31.0W/m~2 cw at 1064nm is produced, which is higher than the reported record, and the slope efficiency is 4.98% with the threshold power on the surface of Fresnel lens is 200 W. In the second setup, a 5 mm diameter laser rod output power is 29.8W/m~2 with a slope efficiency of 4.3%. The threshold power of 102W is obtained, which is 49% lower than the former. Meanwhile, the theoretical calculating of the threshold power and slope efficiency of the solar-pumped laser has been established based on the rate-equation of a four-level system. The results of the finite element analysis by simulation software are verified in experiment. The optimization of the conical cavity by TracePro~? software and the optimization of the laser resonator by LASCAD~? are useful for the design of a miniaturization solar- pumped laser.
机译:阳光被认为是直接光学泵浦固态激光器的新高效源。具有低阈值功率的高效太阳能泵浦激光器比在空间激光通信中具有大型太阳能电池板的半导体激光器更有前景。在这里,我们通过泵送Nd:YAG棒与带槽侧壁泵送的显着提前。设计了两种太阳能泵浦激光设置。在这两种情况下,使用菲涅耳透镜作为主要阳光浓缩器。具有液体光导透镜的镀金锥形腔用作次级浓缩器,以进一步增加太阳能集中。在第一种设置中,太阳能泵送6mm直径Nd:YAG棒,产生1064nm的最大激光功率,为1064nm的31.0w / m〜2 cw,其高于报告的记录,斜率效率为4.98%,阈值功率为4.98%在菲涅耳透镜的表面上为200W。在第二个设置中,5 mm直径的激光棒输出功率为29.8W / m〜2,斜率率为4.3%。获得102W的阈值功率,比前者低49%。同时,基于四级系统的速率方程建立了太阳泵浦激光的阈值功率和斜坡效率的理论计算。通过仿真软件进行有限元分析的结果在实验中进行了验证。 TracePro的锥形腔的优化〜?软件和Lascad激光谐振器的优化〜?对设计微型化太阳能泵浦激光器是有用的。

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