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Numerical analysis of the frequency chirp in quantum dot semiconductor lasers

机译:量子点半导体激光器中频率chi的数值分析

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摘要

We present a numerical model for the analysis of the chirp dynamics of quantum-dot (QD) semiconductor laser under large signal current modulation. The model is based on the multi-population rate equation formalism, and it includes all the peculiar characteristics of the active QD material such as the inhomogeneous broadening of the gain spectrum, the presence of an excited state confined in the QDs and the presence of nonconfined states due to the wetting layer and the barrier. In this paper the model is applied to the analysis of the chirp of two,QD single-mode lasers emitting from the ground state and from the excited state, respectively. In order to make comparisons of the chirp in various operating conditions, we define some equivalent parameters for quantifying the adiabatic and transient contributions to the chirp. These parameters,are then used to analyze the chirp as function of the bias current, of the modulation depth and of the modulation frequency. All the various simulation results show that the carrier accumulation in the QD states, poorly involved in the stimulated emission process and the carrier dynamics in these states, can cause a nonzero chirp under current modulation even for the ideal condition of zero linewidth enhancement factor (or alpha-parameter) at the laser threshold
机译:我们提出了一个数值模型,用于在大信号电流调制下分析量子点(QD)半导体激光器的线性调频动力学。该模型基于多人口速率方程形式,它包含了有源QD材料的所有特有特征,例如增益谱的不均匀展宽,QD中受限的激发态的存在以及非约束中的存在。状态由于润湿层和障碍。本文将该模型用于分析分别从基态和激发态发射的两个QD单模激光器的the声。为了在各种操作条件下比较线性调频脉冲,我们定义了一些等效参数来量化线性调频脉冲的绝热和瞬态贡献。然后使用这些参数来分析线性调频脉冲作为偏置电流,调制深度和调制频率的函数。所有各种仿真结果均表明,即使在零线宽增强因子的理想条件下,QD状态下的载流子积累(很少参与受激发射过程以及这些状态下的载流子动力学)也会在电流调制下导致非零线性调频。激光阈值处的alpha参数)

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