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Interband Cascade Lasers with High Continuous-Wave Output Powers at Room Temperature

机译:室温下具有高连续波输出功率的带间级联激光器

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摘要

We discuss approaches to increasing the cw output power of the interband cascade lasers (ICLs) for the midwave infrared spectral region. While most of the attention to date has been focused on reducing the operating power of the ICL, the optimization for maximum output power proceeds in a different direction. We find that increasing the number of stage is beneficial, in that it boosts the slope efficiency with only a modest penalty due to higher threshold power density and extra heating. The critical figure of merit for realizing high-power ICLs is the internal loss, which can be estimated from the external differential quantum efficiency (EDQE) per stage. The internal loss can be controlled by varying the thickness of the low-doped GaSb separate-confinement layers (SCLs). We demonstrate room-temperature EDQEs approaching 45% for broad-area 7-stage ICLs with 800-nm-thick SCLs.
机译:我们讨论了增加中波红外光谱区域的带间级联激光器(ICL)的cw输出功率的方法。迄今为止,大多数注意力都集中在降低ICL的工作功率上,但最大输出功率的优化却朝着不同的方向进行。我们发现,增加级数是有益的,因为它会由于较高的阈值功率密度和额外的热量而仅以适度的损失来提高斜率效率。实现大功率ICL的关键性能指标是内部损耗,可以从每级的外部差分量子效率(EDQE)进行估算。内部损耗可以通过改变低掺杂GaSb分离约束层(SCL)的厚度来控制。对于具有800nm厚SCL的广域7级ICL,我们展示了室温EDQE接近45%。

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