Radiation-balanced lasing in tandem semiconductor/rare-earth surface-emitting lasers (Conference Presentation)

J. Khurgin
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Abstract

Since optical refrigeration has been demonstrated in rare-earth doped media, its most logical application has been development of a radiation balanced laser (RBL). While efficient and versatile rare-earth solid state laser operates only on a few discrete wavelengths. At the same time semiconductor gain medium can be easily engineered to lase over the entire visible and near IR spectrum. But achieving cooling and RBL in semiconductor medium has proven elusive due to both fundamental (hard to simultaneously achieve gain and anti-Stokes luminescence) and practical (background absorption) reasons. Therefore, it would be worthwhile to consider an alternative, tandem structure in which rare earth doped medium would cool the optically pumped semiconductor laser. In this work we provide guidelines for development of such a laser and estimate its characteristics under realistic conditions.
串联半导体/稀土表面发射激光器的辐射平衡激光(会议报告)
由于光学制冷已在稀土掺杂介质中得到证实,其最合理的应用是开发辐射平衡激光器(RBL)。而高效和通用的稀土固体激光器只能在几个离散的波长上工作。同时,半导体增益介质可以很容易地设计成在整个可见光和近红外光谱上发射激光。但是,由于基本原因(难以同时实现增益和反斯托克斯发光)和实际原因(背景吸收),在半导体介质中实现冷却和RBL已被证明是难以实现的。因此,考虑一种替代的串联结构是值得的,在这种结构中,稀土掺杂介质将冷却光泵浦半导体激光器。在这项工作中,我们为这种激光器的发展提供了指导方针,并在现实条件下估计了它的特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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