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Measurement of gain saturation coefficients in strained-layer multiple quantum-well distributed feedback lasers

机译:应变层多量子阱分布式反馈激光器中增益饱和系数的测量

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Gain saturation coefficients of unstrained- and strained-layer multiple-quantum-well lasers were measured experimentally. These coefficients were higher in lasers that had compressive strain in their active-layer wells: 2.45*10/sup -17/ cm/sup 3/ with unstrained wells and 12.6*10/sup -17/ cm/sup 3/ with strained wells. The higher gain saturation coefficient in lasers with strained active-layer wells is related to their higher linear TE mode gain coefficient. The linearity factor (K factor) between a laser's damping constant and the square of the laser's resonant frequency decreased slightly with the introduction of the strain in the laser's active layer wells. This factor, however, took the value of about 0.2*10/sup -9/ s for each of these lasers.
机译:实验测量了非应变和应变层多量子阱激光器的增益饱和系数。这些系数在其活动层阱中具有压缩应变的激光器中更高:无应变阱时为2.45 * 10 / sup -17 / cm / sup 3 /和有应变阱时为12.6 * 10 / sup -17 / cm / sup 3 / 。具有应变有源层阱的激光器中较高的增益饱和系数与它们较高的线性TE模式增益系数有关。随着应变在激光器有源层阱中的引入,激光器的阻尼常数与谐振频率的平方之间的线性因子(K因子)会略有下降。然而,对于这些激光器中的每一个,该因子取值为约0.2×10 / sup -9 / s。

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