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Time-domain traveling wave models for the modeling and simulation of semiconductor laser optical amplifiers

机译:用于半导体激光光放大器建模和仿真的时域行波模型

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A variety of time-traveling wave models have been implemented based on the spectrum slicing technique for the investigation of semiconductor laser optical amplifiers. One of the key differences among these models lies in their treatment of the phase of the interacting optical waves (signals and noises). Based on this criterion, the models are classified into the full-wave (phases of both signal and noise considered), the half-wave (only signal phase considered), and the full-power (all phases neglected) models. This study has confirmed theoretically the consistency of the models by showing that these three models are identical in terms of the amplified spontaneous emission (ASE) power if there is no input signal injected. Numerical simulation also shows that all these three models give exactly the same ASE power spectrum.
机译:已经基于用于研究半导体激光光放大器的频谱切片技术,实现了各种时间行驶波模型。这些模型之间的一个关键差异在于它们对相互作用光波(信号和噪声)的相位的处理。基于该标准,该模型分为全波(考虑的信号和噪声的阶段),半波(仅考虑的信号相位),以及全功率(忽略了所有阶段)模型。本研究通过表明,如果没有注入的输入信号,这三种模型在放大的自发发射(ASE)功率方面是相同的,则在理论上证实了模型的一致性。数值模拟还表明,所有这三种型号都提供了完全相同的ASE功率谱。

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