首页> 外文期刊>IEEE Journal of Quantum Electronics >Theoretical and Experimental Study of Optical Gain, Refractive Index Change, and Linewidth Enhancement Factor of p-Doped Quantum-Dot Lasers
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Theoretical and Experimental Study of Optical Gain, Refractive Index Change, and Linewidth Enhancement Factor of p-Doped Quantum-Dot Lasers

机译:p掺杂量子点激光器的光学增益,折射率变化和线宽增强因子的理论和实验研究

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A theoretical and experimental study of the optical gain, refractive index change, and linewidth enhancement factor (LEF) of a p-doped quantum-dot (QD) laser is reported. These parameters are measured by injecting an external pump, which induces cross-gain and cross-phase modulation. A comprehensive theoretical model for the optical gain and refractive index change of InAs QD lasers is introduced with the quasi-equilibrium approximation of carrier distribution. We use the Gaussian lineshape function for gain change and the confluent hypergeometric function of the first kind for refractive index change, which satisfies the Kramers-Kronig relation. We match the experimental data with the theoretical results when the thermal effect is isolated by an additional pulsed current measurement. We also calculate theoretically the optical gain, refractive index change, and LEF of an undoped QD laser of the same structure except the absence of p-type doping. We show that the differential gain and LEF of the p-doped QD laser are improved compared with those of the undoped QD laser due to the reduced transparency carrier density.
机译:报告了对p掺杂量子点(QD)激光器的光学增益,折射率变化和线宽增强因子(LEF)的理论和实验研究。这些参数是通过注入一个外部泵来测量的,该泵会引起交叉增益和交叉相位调制。利用载流子分布的准平衡近似,建立了InAs QD激光器的光学增益和折射率变化的综合理论模型。我们将高斯线形函数用于增益变化,并将第一类融合的超几何函数用于折射率变化,这满足Kramers-Kronig关系。当通过额外的脉冲电流测量隔离热效应时,我们会将实验数据与理论结果进行匹配。我们还从理论上计算了除了没有p型掺杂以外,相同结构的未掺杂QD激光器的光学增益,折射率变化和LEF。我们表明,由于降低了透明载流子密度,与未掺杂的QD激光器相比,p掺杂的QD激光器的差分增益和LEF有所提高。

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