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Theory and experiment on the amplified spontaneous emission from distributed-feedback lasers

机译:分布式反馈激光器放大自发发射的理论与实验

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The amplified spontaneous emission (ASE) of a strained quantum-well distributed feedback (DFB) laser biased below laser threshold is used to extract the gain and refractive index spectra in a systematic manner. A modified Hakki-Paoli method is used to obtain the gain and differential gain spectra. The refractive index change due to carrier injection is obtained from the shift of the Fabry-Perot peaks in the ASE spectrum. The measured ASE spectrum, gain, refractive index change, and linewidth enhancement factor are then compared with our theoretical model for strained quantum-well lasers. Our model takes into account the realistic band structure and uses the material and quantum-well dimensions directly in the calculation of the electronic and optical properties. The theory agrees very well with the experiment.
机译:偏置低于激光阈值的应变量子阱分布反馈(DFB)激光的放大自发发射(ASE)用于系统地提取增益和折射率光谱。改进的Hakki-Paoli方法用于获得增益和差分增益谱。由载流子注入引起的折射率变化是从ASE光谱中Fabry-Perot峰的位移获得的。然后将测得的ASE光谱,增益,折射率变化和线宽增强因子与我们的应变量子阱激光器的理论模型进行比较。我们的模型考虑了实际的能带结构,并直接在计算电子和光学特性时使用了材料和量子阱的尺寸。该理论与实验非常吻合。

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