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Analysis of gain and saturation characteristics of a semiconductor laser optical amplifier using transfer matrices

机译:利用转移矩阵分析半导体激光放大器的增益和饱和特性

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The transfer matrix method (TMM) has been applied to analyze the gain and saturation characteristics of semiconductor laser optical amplifiers. This method approximates the amplifier cavity by dividing it into M discrete subsections, and TMM has been applied to analyze the stepwise longitudinal field distribution at each subsection along the amplifier cavity. By incorporating also the carrier rate equations into the analysis, it has been shown that the approximation can accurately describe the carrier density and longitudinal field distribution along the amplifier cavity if M is sufficiently large (i.e., the size of each subsection is about an order of magnitude of one wavelength of the input signal). By assuming that the amplifier is biased below oscillation threshold such that the contribution of spontaneous emissions to the gain characteristics can be neglected, we have shown that our proposed method yields a fast and efficient algorithm in analyzing the gain and saturation characteristics of laser amplifiers. We have compared the results produced by our method to those analyzed using the average photon density (AVPD) approximation technique, as well as to experimental results on a 1.5-/spl mu/m buried heterostructure semiconductor laser amplifier.
机译:传输矩阵法(TMM)已用于分析半导体激光光放大器的增益和饱和特性。该方法通过将放大器腔划分为M个离散的子部分来近似放大器腔,并且已应用TMM分析沿着放大器腔的每个子部分的逐步纵向场分布。通过将载波速率方程式也纳入分析,已表明,如果M足够大(即,每个子部分的大小约为1的数量级),则近似值可以准确描述沿放大器腔的载波密度和纵向场分布。输入信号的一个波长的幅度)。通过假设放大器被偏置在振荡阈值以下,从而可以忽略自发发射对增益特性的贡献,我们已经表明,我们提出的方法在分析激光放大器的增益和饱和特性方面产生了一种快速有效的算法。我们将通过我们的方法产生的结果与使用平均光子密度(AVPD)近似技术分析的结果以及在1.5- / splμm/ m埋入式异质结构半导体激光放大器上的实验结果进行了比较。

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