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Optical Feedback Tolerance of Quantum-Dot- and Quantum-Dash-Based Semiconductor Lasers Operating at 1.55 $mu$m

机译:基于量子点和基于量子破折号的半导体激光器的光反馈容限为1.55μmu$ m

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This paper reports on the tolerance of low-dimensional InAs/InP quantum-dash- and quantum-dot-based semiconductor lasers to optical feedback in the 1.55 mum window. For this purpose, the onset of coherence collapse (CC) is experimentally determined and systematically investigated as a function of different laser parameters, such as the injection current, differential gain, temperature, and photon lifetime. It is in particular found that for both material systems the onset of CC increases with the injection current in a similar way to bulk or quantum-well-based devices. Of most importance, we experimentally show that the differential gain plays a key role in the optical feedback tolerance. It is indeed shown to determine not only the range of the onset of CC but also the dependence of this threshold both on the temperature and laser cavity length. Increasing the operating temperature from 25degC to 85degC leads to a decrease of the onset of CC by a factor of only ~3 dB, well accounted for by the variation of the differential gain in this temperature range. We find no difference in the tolerance to external reflections of a truly 3-D confined quantum-dot-based laser and a quantum dash device of the same cavity length, which have similar differential gains. A tentative analysis of our data is finally carried out, based on existing models.
机译:本文报道了低维InAs / InP量子破折号和基于量子点的半导体激光器在1.55微米窗口中对光反馈的耐受性。为此,根据不同的激光参数(例如注入电流,微分增益,温度和光子寿命),通过实验确定相干塌陷(CC)的发生并进行系统地研究。尤其发现,对于两种材料系统,CC的发生都随着注入电流的增加而增加,这与基于体或基于量子阱的器件相似。最重要的是,我们通过实验证明了差分增益在光反馈容限中起着关键作用。确实表明,不仅要确定CC的发作范围,而且还要确定该阈值对温度和激光腔长度的依赖性。将工作温度从25°C升高到85°C导致CC的开始仅降低〜3 dB,这在此温度范围内的差分增益变化中得到了很好的解释。我们发现,相同腔长的,具有相似差分增益的真正3D受限量子点基激光器和量子破折号器件对外部反射的容限没有差异。最后,根据现有模型对我们的数据进行了初步分析。

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