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A probability-amplitude transfer matrix model for distributed-feedback laser structures

机译:分布式反馈激光结构的概率-振幅传递矩阵模型

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摘要

Two different treatments of spontaneous emission in distributed-feedback (DFB) lasers were found in the literature, but adequate explanations for the different treatments were not found. Using an approach that allows comparison of the two different treatments of spontaneous emission, we show that the different treatments can lead to different spectral predictions. The difference in spectral predictions is negligible in Fabry-Perot lasers and index-coupled DFB lasers. However, in truncated-well gain-coupled DFB lasers, the difference between the two treatments is noticeable, and one treatment is markedly better at fitting to data. The treatment that best fits the data is also the treatment that makes sense quantum-mechanically.
机译:在文献中发现了两种不同的分布式反馈(DFB)激光器自发发射方法,但是没有找到对不同方法的充分解释。使用一种方法,可以比较两种不同的自发辐射处理方法,我们证明了不同的处理方法可以导致不同的光谱预测。在法布里-珀罗(Fabry-Perot)激光器和折射率耦合DFB激光器中,光谱预测的差异可以忽略不计。但是,在截阱增益耦合DFB激光器中,两种处理之间的差异是明显的,并且一种处理在拟合数据方面明显更好。最适合数据的处理方式也是量子力学意义上的处理方式。

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