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Static and Dynamic Response Analysis of Raman Injection Quantum Cascade Laser Using Circuit Level Modeling

机译:喇曼注入量子级联激光器静态和动态响应的电路级建模。

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摘要

In this paper a new approach for modeling of Raman quantum cascade lasers (QCLs) is presented which integrates electrical, optical and Raman effects. The equivalent circuit model of laser by employing simplified two-level rate equations of pump and Raman regions is developed. The total equivalent circuit is composed of pump laser circuit coupled to Raman laser circuit which models the behaviors of each component and whole device. By using the presented model the static and dynamic performances of laser for different parameters are investigated. The results of simulation show that the main characteristics of laser such as threshold current, quantum efficiency, output power and modulation response are affected by photon lifetime and variation of population inversion conditions. Static results of model agree favorably with experimental data from devices reported in the literatures.
机译:在本文中,提出了一种新的建模拉曼量子级联激光器(QCL)的方法,该方法集成了电,光和拉曼效应。利用简化的泵浦区和拉曼区的二级速率方程,建立了激光器的等效电路模型。总等效电路由耦合到拉曼激光器电路的泵浦激光器电路组成,后者对每个组件和整个设备的行为进行建模。通过使用提出的模型,研究了不同参数下激光器的静态和动态性能。仿真结果表明,光子寿命和种群反转条件的变化会影响激光器的主要特性,如阈值电流,量子效率,输出功率和调制响应。模型的静态结果与文献报道的设备的实验数据吻合良好。

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