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Quantum-dot micropillar lasers subject to coherent time-delayed optical feedback from a short external cavity

机译:量子点微柱状激光器受短外腔相干延时光反馈的影响

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摘要

We investigate the mode-switching dynamics of an electrically driven bimodal quantum-dot micropillar laser when subject to delayed coherent optical feedback from a short external cavity. We experimentally characterize how the external cavity length, being on the same order than the microlaser’s coherence length, influences the spectral and dynamical properties of the micropillar laser. Moreover, we determine the relaxation oscillation frequency of the micropillar by superimposing optical pulse injection to a dc current. It is found that the optical pulse can be used to disturb the feedback-coupled laser within one roundtrip time in such a way that it reaches the same output power as if no feedback was present. Our results do not only expand the understanding of microlasers when subject to optical feedback from short external cavities, but pave the way towards tailoring the properties of this key nanophotonic system for studies in the quantum regime of self-feedback and its implementation to integrated photonic circuits.
机译:当受到来自短的外腔的延迟相干光反馈的影响时,我们研究了电驱动的双峰量子点微柱激光器的模式切换动力学。我们通过实验表征了外腔长度(与微激光器的相干长度处于同一数量级)如何影响微柱状激光器的光谱和动力学特性。此外,我们通过将光脉冲注入叠加到直流电流来确定微柱的弛豫振荡频率。已经发现,光脉冲可以在一个往返时间内被用来干扰反馈耦合激光器,使得它达到与没有反馈一样的输出功率。我们的结果不仅扩展了对微激光器的理解,当受到来自短的外部腔体的光反馈的影响时,我们的研究还为定制这种关键的纳米光子系统的性质铺平了道路,以研究自反馈的量子态及其在集成光子电路中的实现。

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