Liang Dawei, Almeida Joana
CEFITEC, Departamento de Física, FCT, Universidade Nova de Lisboa, Campus de Caparica, Portugal.
Opt Express. 2011 Dec 19;19(27):26399-405. doi: 10.1364/OE.19.026399.
The recent progress in solar-pumped laser with Fresnel lens and Cr:Nd:YAG ceramic medium has revitalized solar laser researches, revealing a promising future for renewable reduction of magnesium from magnesium oxide. Here we show a big advance in solar laser collection efficiency by utilizing an economical Fresnel lens and a most widely used Nd:YAG single-crystal rod. The incoming solar radiation from the sun is focused by a 0.9 m diameter Fresnel lens. A dielectric totally internally reflecting secondary concentrator is employed to couple the concentrated solar radiation from the focal zone to a 4 mm diameter Nd:YAG rod within a conical pumping cavity. 12.3 W cw laser power is produced, corresponding to 19.3 W/m(2) collection efficiency, which is 2.9 times larger than the previous results with Nd:YAG single-crystal medium. Record-high slope efficiency of 3.9% is also registered. Laser beam quality is considerably improved by pumping a 3 mm diameter Nd:YAG rod.
近期采用菲涅耳透镜和Cr:Nd:YAG陶瓷介质的太阳泵浦激光器取得的进展,重振了太阳激光研究,为从氧化镁中可再生还原镁展现出光明前景。在此,我们展示了通过使用经济的菲涅耳透镜和最广泛使用的Nd:YAG单晶棒,太阳激光收集效率取得的重大进展。来自太阳的入射太阳辐射由直径0.9米的菲涅耳透镜聚焦。采用介电全内反射二次聚光器,将来自聚焦区的聚光太阳辐射耦合到锥形泵浦腔内直径4毫米的Nd:YAG棒上。产生了12.3瓦连续激光功率,对应19.3瓦/平方米的收集效率,这比之前使用Nd:YAG单晶介质的结果高2.9倍。还记录到高达3.9%的斜率效率。通过泵浦直径3毫米的Nd:YAG棒,激光束质量得到显著改善。