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长波红外和太赫兹波段量子级联激光频率调制梳的时间特性

Temporal characteristics of quantum cascade laser frequency modulated combs in long wave infrared and THz regions.

作者信息

Henry Nathan, Burghoff David, Hu Qing, Khurgin Jacob B

出版信息

Opt Express. 2018 May 28;26(11):14201-14212. doi: 10.1364/OE.26.014201.

Abstract

We consider here a time domain model representing the dynamics of quantum cascade lasers (QCLs) generating frequency combs (FCs) in both THz and long wave infrared (LWIR λ = 8-12µm) spectral ranges. Using common specifications for these QCLs we confirm that the free running laser enters a regime of operation yielding a pseudo-randomly frequency modulated (FM) radiation in the time domain corresponding to FCs with stable phase relations in the frequency domain. We provide an explanation for this unusual behavior as a consequence of competition for the most efficient regime of operation. Expanding the model previously developed in [Opt. Eng. 57(1), 011009 (2017)] we analyze the performance of realistic THz and LWIR QCLs and show, despite the vastly different scale of many parameters, that both types of lasers offer very similar characteristics, namely FM operation with an FM period commensurate with the gain recovery time and an FM amplitude comparable with the gain bandwidth. We also identify the true culprit behind pseudo-random dynamics of the FM comb to be spatial hole burning, rather than the more pervasive spectral hole burning.

摘要

我们在此考虑一个时域模型,该模型描述了在太赫兹和长波红外(LWIR,λ = 8 - 12µm)光谱范围内产生频率梳(FC)的量子级联激光器(QCL)的动力学。利用这些QCL的通用规格,我们证实自由运行的激光器进入一种运行状态,在时域中产生伪随机频率调制(FM)辐射,这对应于在频域中具有稳定相位关系的FC。我们对这种异常行为给出了解释,认为这是最有效运行状态竞争的结果。扩展先前在[《光学工程》57(1), 011009 (2017)]中开发的模型,我们分析了实际太赫兹和LWIR QCL的性能,并表明,尽管许多参数的尺度差异巨大,但这两种类型的激光器具有非常相似的特性,即FM运行,其FM周期与增益恢复时间相当,FM幅度与增益带宽相当。我们还确定了FM梳伪随机动力学背后的真正原因是空间烧孔,而非更普遍的光谱烧孔。

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