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Quantum Cascade Laser Progress and Outlook

机译:量子级联激光进展和前景

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摘要

Recent progress and outlook in quantum cascade lasers (QCLs) in the mid- to far-infrared wavelength range (3.6-16 μm) are reviewed. Our recent work has focused on the development of high-power continuous-wave (CW) QCLs emitting in wavelengths of 4.3-6.3 μm at room temperature and above. For λ~6 μm, advanced heterostructure geometries, including the use of a thick electroplated gold, epilayer-side heat sink lead to the first remarkable high-power CW QCL performance above room temperature, and a buried-ridge heterostructure are demonstrated to improve significantly laser performance (i.e., 579 mW at 298 K and operation up to 343 K) when combined with narrow laser ridges. Through re-engineering the optimized strain-balanced design, a similar excellent operation is achieved at 4.3-6.3 μm. The pulse operations of the shorter wavelength (3.6-4 μm) and the long wavelength (8-16 μm) QCLs at room temperature are also demonstrated. Lastly, these results are put in the perspective of other reported results and possible future directions are discussed.
机译:综述了最近的量子级联激光器(QCLS)中的进展和前景,在中线到远红外波长范围(3.6-16μm)中进行了综述。我们最近的工作专注于在室温及更高的温度下发射4.3-6.3μm的高功率连续波(CW)Qcls的开发。对于λ〜6μm,先进的异质结构几何形状,包括使用厚电镀金,脱晶散热器导致室温高于第一显着的高功率CW QCL性能,并且掩埋脊异质结构被证明显着改善与窄激光脊合并时,激光性能(即,298 k和298 k的操作,操作高达343 k)。通过重新设计优化的应变平衡设计,在4.3-6.3μm处实现了类似的优异操作。还证明了室温下较短波长(3.6-4μm)的脉冲操作和长波长(8-16μm)Qcls。最后,这些结果在其他报告的结果的角度下,讨论了可能的未来方向。

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