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Prospects for solar-pumped semiconductor lasers

机译:太阳能泵浦半导体激光器的前景

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Abstract: Approaches are discussed for a direct solar-pumped semiconductor laser. Efficiencies of 35% should be achievable, an order of magnitude better than the efficiency achieved by other solar- pumped lasers. The output wavelength of a semiconductor laser will be well matched to the optimum conversion efficiency of a solar cell of the same material. Solar pumped semiconductor lasers are thus an excellent candidate for space-based energy transmission. Recently several designs for such lasers have been proposed. A critical parameter is the sunlight intensity required for lasing. This threshold has been calculated to be in the range of 2500 to 10,000 times solar intensity for conventional stripe laser designs, depending on assumptions. Several approaches have been recently proposed to reduce this threshold. The calculated minimum threshold is 25 - 50 times solar concentration, and could possibly be reduced even further with use of light-trapping. !13
机译:摘要:讨论了直接太阳泵浦半导体激光器的方法。效率应该可以达到35%,比其他太阳能泵浦激光器获得的效率高一个数量级。半导体激光器的输出波长将与相同材料的太阳能电池的最佳转换效率完全匹配。因此,太阳能泵浦半导体激光器是天基能量传输的极佳候选者。最近,已经提出了用于这种激光器的几种设计。关键参数是激光发射所需的阳光强度。根据假设,此阈值已计算为常规条纹激光器设计的日照强度的2500到10,000倍。最近提出了几种方法来减小该阈值。计算出的最小阈值是太阳集中度的25-50倍,并且可以通过使用光阱来进一步降低。 !13

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