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Multimode dynamics and modeling of free-running and optically injected Fabry-Pérot quantum-dot lasers

机译:自由运行和光学注射法布里 - Péroot量子点激光器的多模动力学和建模

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摘要

We derive and apply a numerical model for the description of optically injected long-cavity Fabry-Pérot (FP) quantum-dot (QD) lasers, based on a multisection delay-algebraic-equation approach. In conjunction with experimental measurements, we characterize the multimode dynamics of the free-running laser as well as under external optical injection. We investigate the dynamics of the spatial hole burning (SHB) in the charge-carrier distribution, which is significant in QD lasers and is furthermore a driving mechanism for the emergence of multimode dynamics. In the injected laser, we focus on the transition between the locking regions of neighboring FP modes, which could not be described using traditional multimode rate-equation models. For very strong injection, the individual locking cones are found to converge. For intermediate injection strength, an additional dynamic boundary between the unlocked states is found in a narrow dynamical region in between two neighboring locking cones. This region is characterized by a further unlocking of all laser modes. Furthermore, we find the SHB to impose a threshold in the locking strength which must be overcome to lock a laser mode.
机译:我们基于多部延迟代数 - 方程方法,我们得出并应用了用于光学注入的长腔Fabry-Pérot(FP)量子点(QD)激光器的数字模型。结合实验测量,我们将自由运行激光器的多模动力学以及外部光学喷射的特征表征。我们研究了电荷载波分布中的空间孔燃烧(SHB)的动态,这在QD激光器中具有重要意义,并且还具有用于多模动态的出现的驱动机制。在注入的激光器中,我们专注于相邻FP模式的锁定区域之间的过渡,这不能使用传统的多模率方程式模型来描述。对于非常强的注射,发现各个锁定锥体会聚。对于中间注射强度,在两个相邻的锁定锥之间的窄动态区域中发现解锁状态之间的额外动态边界。该区域的特征在于进一步解锁所有激光模式。此外,我们发现SHB在必须克服锁定强度施加阈值以克服激光模式。

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