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Multimode regimes in quantum cascade lasers: From coherent instabilities to spatial hole burning

机译:量子级联激光器中的多模态:从相干不稳定性到空间空穴燃烧

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摘要

A theoretical and experimental study of multimode operation regimes in quantum cascade lasers (QCLs) is presented. It is shown that the fast gain recovery of QCLs promotes two multimode regimes: One is spatial hole burning (SHB) and the other one is related to the Risken-Nummedal-Graham-Haken instability predicted in the 1960s. A model that can account for coherent phenomena, a saturable absorber, and SHB is developed and studied in detail both analytically and numerically. A wide variety of experimental data on multimode regimes is presented. Lasers with a narrow active region and/or with metal coating on the sides tend to develop a splitting in the spectrum, approximately equal to twice the Rabi frequency. It is proposed that this behavior stems from the presence of a saturable absorber, which can result from a Kerr lensing effect in the cavity. Lasers with a wide active region, which have a weaker saturable absorber, do not exhibit a Rabi splitting and their multimode regime is governed by SHB. This experimental phenomenology is well-explained by our theoretical model. The temperature dependence of the multimode regime is also presented.
机译:提出了量子级联激光器(QCLs)中的多模工作机制的理论和实验研究。结果表明,QCL的快速增益恢复促进了两种多模态:一种是空间空穴燃烧(SHB),另一种与1960年代预测的Risken-Nummedal-Graham-Haken不稳定性有关。建立了一个可以解释相干现象的模型,一个可饱和的吸收体和SHB,并在分析和数值上进行了详细研究。提出了关于多模态的各种实验数据。有源区较窄和/或侧面镀有金属的激光趋于在光谱上产生分裂,大约等于拉比频率的两倍。提出这种行为是由于可饱和吸收剂的存在而引起的,这可归因于空腔中的Kerr透镜效应。有源区较宽的激光器,其吸收器较弱,不会出现拉比分裂,其多模态受SHB控制。我们的理论模型很好地解释了这种实验现象学。还介绍了多模态的温度依赖性。

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