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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Modeling the Injection-Locked Behavior of a Quantum Dash Semiconductor Laser
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Modeling the Injection-Locked Behavior of a Quantum Dash Semiconductor Laser

机译:模拟量子破折号半导体激光器的注入锁定行为

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摘要

Using the conventional rate equations describing an injection-locked system, a novel modulation response function is derived, which implicitly incorporates nonlinear gain through the free-running relaxation oscillation frequency and damping rate of the slave laser. In this paper, it is shown that the model presented can be used to extract the characteristic parameters of the coupled system from experimental data. The number of fitting parameters in the model is reduced by determining the fundamental slave parameters through the conventional free-running response function; these parameters are considered to be constant during the curve-fitting of the injection-locked system. Furthermore, in order to reduce the number of possible solutions generated during the least-squares-fitting process, the remaining fitting parameters are tightly constrained based on the physical limits of the coupled system. By reducing the number of unknown fitting parameters and constraining the remaining terms, a stronger confidence in the extracted parameters is achieved. Using a series of response curves measured from an injection-locked quantum dash laser, characteristic parameters of the system are extracted and validity of the model is examined. The verified model is used to analyze the impact of the linewidth enhancement factor on the characteristics of the response function in the microwave domain.
机译:使用描述注入锁定系统的常规速率方程,推导了一种新颖的调制响应函数,该函数通过自由运行的弛豫振荡频率和从激光器的阻尼率隐含了非线性增益。在本文中,表明所提出的模型可用于从实验数据中提取耦合系统的特征参数。通过常规的自由运行响应函数确定基本的从属参数,可以减少模型中的拟合参数数量;这些参数在注射锁定系统的曲线拟合期间被认为是恒定的。此外,为了减少在最小二乘拟合过程中生成的可能解的数量,基于耦合系统的物理限制严格限制其余拟合参数。通过减少未知拟合参数的数量并约束其余项,可以提高对提取参数的信心。使用从注入锁定量子点激光器测量的一系列响应曲线,提取系统的特征参数并检查模型的有效性。验证后的模型用于分析线宽增强因子对微波域响应函数特征的影响。

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