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Investigations of the spectral characteristics of 980-nm InGaAs-GaAs-AlGaAs lasers

机译:980 nm InGaAs-GaAs-AlGaAs激光器的光谱特性研究

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摘要

Semiconductor quantum-well (QW) lasers at 980 nm exhibit unique spontaneous emission spectra with a periodic envelope of approximately 2/spl sim/3-nm wavelength. This phenomenon has been observed in both front facet and side spontaneous emission. The modulation is modeled in terms of coupling between the laser waveguide and the substrate waveguide which is transparent to 980-nm light. Modal gain spectra of the entire waveguide structure including substrate are calculated numerically by a transfer matrix method. The gain spectra in the active stripe and loss spectra in the unpumped QW exhibit modulation. This results in modulation of the emission spectra. An analytical approach based on coupled mode equations is developed to explain and clarify the results of the numerical modeling. The interesting case of a coupling length that is small by comparison with the gain/loss length is examined in detail. Front facet and side spontaneous emission spectra calculated using the modal gain spectra are in good agreement with the measured spectra. The results presented make it possible to interpret the unique modal characteristics of 980-nm lasers quantitatively and relate them to the physical structural parameters.
机译:980 nm的半导体量子阱(QW)激光器表现出独特的自发发射光谱,其周期性包络约为2 / spl sim / 3 nm波长。在正面和侧面自发发射中都观察到了这种现象。调制是根据激光波导与对980 nm光透明的衬底波导之间的耦合进行建模的。通过转移矩阵法数值计算包括基板在内的整个波导结构的模态增益谱。有源条带中的增益谱和未泵浦的QW中的损耗谱显示调制。这导致发射光谱的调制。开发了一种基于耦合模式方程的分析方法,以解释和阐明数值建模的结果。详细讨论了耦合长度与增益/损耗长度相比较小的有趣情况。使用模态增益谱计算的正面和侧面自发发射光谱与实测光谱非常吻合。呈现的结果使得可以定量解释980 nm激光器的独特模态特征,并将其与物理结构参数相关联。

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