Nechayev Sergey, Rotschild Carmel
Department of Mechanical Engineering and Russell Berrie Nanotechnology Institute, Technion-Israel Institute of Technology, Haifa, 32000, Israel.
Sci Rep. 2017 Sep 13;7(1):11497. doi: 10.1038/s41598-017-11857-y.
Broadband light sources are a wide class of pumping schemes for lasers including LEDs, sunlight and flash lamps. Recently, efficient coupling of broadband light to high-quality micro-cavities has been demonstrated for on-chip applications and low-threshold solar-pumped lasers via cascade energy transfer. However, the conversion of incoherent to coherent light comes with an inherent price of reduced efficiency, which has yet to be assessed. In this paper, we derive the detailed balance limit of efficiency of broadband-pumped lasers and discuss how it is affected by the need to maintain a threshold population inversion and thermodynamically dictated minimal Stokes' shift. We show that lasers' slope efficiency is analogous to the nominal efficiency of solar cells, limited by thermalisation losses and additional unavoidable Stokes' shift. The lasers' power efficiency is analogous to the detailed balance limit of efficiency of solar cells, affected by the cavity mirrors and impedance matching factor, respectively. As an example we analyze the specific case of solar-pumped sensitized Nd:YAG-like lasers and define the conditions to reach their thermodynamic limit of efficiency. Our work establishes an upper theoretical limit for the efficiency of broadband-pumped lasers. Our general, yet flexible model also provides a way to incorporate other optical and thermodynamic losses and, hence, to estimate the efficiency of non-ideal broadband-pumped lasers.
宽带光源是一类广泛的激光泵浦方案,包括发光二极管、太阳光和闪光灯。最近,通过级联能量转移,已证明宽带光与高质量微腔的高效耦合可用于片上应用和低阈值太阳能泵浦激光器。然而,非相干光到相干光的转换伴随着效率降低的固有代价,这一点尚未得到评估。在本文中,我们推导了宽带泵浦激光器效率的详细平衡极限,并讨论了它如何受到维持阈值粒子数反转的需求以及热力学决定的最小斯托克斯位移的影响。我们表明,激光器的斜率效率类似于太阳能电池的标称效率,受热化损失和额外不可避免的斯托克斯位移限制。激光器的功率效率类似于太阳能电池效率的详细平衡极限,分别受腔镜和阻抗匹配因子的影响。作为一个例子,我们分析了太阳能泵浦敏化类钕钇铝石榴石激光器的具体情况,并确定了达到其热力学效率极限的条件。我们的工作为宽带泵浦激光器的效率建立了一个理论上限。我们通用且灵活的模型还提供了一种纳入其他光学和热力学损失的方法,从而能够估计非理想宽带泵浦激光器的效率。