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A COMPACT SOLAR LASER SIDE-PUMPING SCHEME USING FOUR OFF-AXIS PARABOLIC MIRRORS

机译:使用四个轴外抛物面镜的紧凑型太阳激光沿泵送方案

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摘要

Laser side-pumping approach is an extremely attractive configuration for many laser applications. Through this approach, the laser beam can be generated in the lowest possible spatial modes, with the highest beam brightness and quality. In this study, a significant improvement in the solar laser output power and collection efficiency of a side-pumped Nd:YAG laser rod, with a length of 84 mm and a diameter of 7.5 mm, is numerically achieved using four off-axis primary parabolic mirrors with a total collection area of 10 m(2). Four fused-silica aspheric-lens secondary concentrators are used to efficiently couple the concentrated solar power from the four focal zones of the off-axis parabolic mirrors into a single laser rod enclosed within four 2V-shaped pump cavities. The optimum solar-laser design parameters are determined using the ZEMAX nonsequential ray-tracing and LASCAD laser-cavity analysis software. A power of 346.8 W continuous-wave 1064 nm solar laser is determined numerically in the multimode operation. This corresponds to a solar laser collection efficiency and solar-to-laser power conversion efficiency of 34.7 W/m(2) and 3.84%, respectively, which demonstrate an improvement of 2.04 and 1.58 times, respectively, over the existing experimental record for side-pumped Nd:YAG solar lasers.
机译:激光侧泵送方法是许多激光应用的极具吸引力的配置。通过这种方法,可以在最低可能的空间模式下产生激光束,具有最高的光束亮度和质量。在该研究中,使用四个轴上主要抛物线进行了长度为84mm的太阳激光输出功率和集合效率的显着改善,长度为84mm,直径为7.5mm。镜子总收集面积为10米(2)。使用四种熔融二氧化硅非球面透镜二次浓缩器用于从轴上抛物面镜的四个焦点区的浓缩太阳能从封闭在四个2V形泵腔内封闭的单个激光杆。使用Zemax非顺序射线跟踪和Lascad激光腔分析软件确定最佳的太阳激光设计参数。在多模操作中以数字方式确定346.8W连续波1064nm太阳能激光器的功率。这相当于太阳激光收集效率和太阳能激光功率转换效率,分别为34.7W / m(2)和3.84%,分别在现有的侧面的实验记录中分别提高了2.04和1.58倍-pumped nd:yag太阳能激光器。

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