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Numerical simulation of optical feedback on a quantum dot lasers

机译:量子点激光器上光反馈的数值模拟

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We use multi-population rate equations model to study feedback oscillations in the quantum dot laser. This model takes into account all peculiar characteristics in the quantum dots such as inhomogeneous broadening of the gain spectrum, the presence of the excited states on the quantum dot and the non-confined states due to the presence of wetting layer and the barrier. The contribution of quantum dot groups, which cannot follow by other models, is simulated. The results obtained from this model show the feedback oscillations, the periodic oscillations which evolves to chaos at higher injection current of higher feedback levels. The frequency fluctuation is attributed mainly to wetting layer with a considerable contribution from excited states. The simulation shows that is must be not using simple rate equation models to express quantum dots working at excited state transition.
机译:我们使用多种群速率方程模型来研究量子点激光器中的反馈振荡。该模型考虑了量子点中的所有特殊特性,例如增益谱的不均匀展宽,量子点上激发态的存在以及由于存在润湿层和势垒而产生的非约束态。模拟了其他模型无法追踪的量子点组的贡献。从该模型获得的结果显示出反馈振荡,周期性振荡在较高反馈电平的较高注入电流下演变为混沌。频率波动主要归因于润湿层,而激发态的贡献很大。仿真表明,一定不能使用简单的速率方程模型来表示在激发态跃迁下工作的量子点。

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