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Analytical Expressions, Modeling, and Simulations of Intensity and Frequency Fluctuations in Directly Modulated Semiconductor Lasers

机译:直接调制半导体激光器强度和频率波动的分析表达式,建模和模拟

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Analytical expressions for the intensity and frequency/phase noise of single mode semiconductor lasers based on quantum-mechanical rate equations are derived. Correlated photons, electrons, and phase Langevin noise sources and their auto and cross-correlation relations are presented along with a novel self-consistent normalized laser model that includes the laser's correlated noise sources. A Symbolically Defined Device (SDD) is constructed using the proposed normalized model and implemented in Agilent's Advanced Design System (ADS) CAD tool. Dynamic laser characteristics are predicted using the SDD implementation for 1300 nm InGaAsP/InP lasers. The results of time domain dynamic simulations of photons, carriers, optical output power, and phase - with and without the effects of the noise - are presented. Simulation results are used to show the effects of random noise on both the phase and optical power output of semiconductor lasers. Simulation results are analyzed to demonstrate the resonance frequency shift dependence on the bias current levels, the relation between the frequency response and the bias current and the dependence of the laser line width broadening on the frequency fluctuations. Comparison between the presented results and other published results (simulations and measurements) show good agreement while achieving simulation time enhancement. The suitability of the proposed models for the study and characterization of the performance of complete systems in both circuit and system simulations is examined.
机译:推导了基于量子机械速率方程的单模半导体激光器的强度和频率/相位噪声的分析表达式。与包括激光相关噪声源的新型自我一致标准化激光模型一起呈现相关的光子,电子和相位乐曲噪声源及其自动和互相关关系。使用所提出的归一化模型构建象征性定义的设备(SDD),并在Agilent的高级设计系统(广告)CAD工具中实现。使用SDD实现预测动态激光特性,用于1300 nm IngaASP / INP激光器。提出了时域动态模拟的光子,载波,光输出功率和相位 - 具有和不带噪声影响的结果。仿真结果用于显示随机噪声对半导体激光器的相位和光功率输出的影响。分析模拟结果以展示对偏置电流水平的谐振频率偏移依赖性,频率响应与偏置电流之间的关系以及激光线宽宽度在频率波动上的依赖性。呈现的结果和其他公布结果之间的比较(模拟和测量)在实现模拟时间增强时显示出良好的一致性。考虑了拟议模型的适用性,用于研究和表征完整系统在电路和系统模拟中的性能。

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