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Optical gain and gain suppression of quantum-well lasers with valence band mixing

机译:价带混合的量子阱激光器的光学增益和增益抑制

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The effects of valence band mixing on the nonlinear gains of quantum-well lasers are studied theoretically for the first time. The analysis is based on the multiband effective-mass theory and the density matrix formalism with intraband relaxation taken into account. The gain and the gain-suppression coefficient of a quantum-well laser are calculated from the complex optical susceptibility obtained by the density matrix formulation with the theoretical dipole moments obtained from the multiband effective-mass theory. The calculated gain spectrum shows that there are differences (both in peak amplitude and spectral shape) between this model with valence band mixing and the conventional parabolic band model. The shape of the gain spectrum calculated by the new model becomes more symmetric due to intraband relaxation together with nonparabolic energy dispersions. Optical intensity in the GaAs active region is estimated by solving rate equations for the stationary states with nonlinear gain suppression.
机译:理论上首次研究了价带混合对量子阱激光器非线性增益的影响。该分析基于多频带有效质量理论,并考虑了带内弛豫的密度矩阵形式。量子阱激光器的增益和增益抑制系数由密度矩阵公式获得的复光学磁化率和多频带有效质量理论得出的理论偶极矩计算得出。计算出的增益谱表明,在带价带混合的模型与常规抛物线带模型之间,存在差异(峰值幅度和频谱形状)。由于带内弛豫以及非抛物线能量色散,由新模型计算出的增益谱的形状变得更加对称。通过求解具有非线性增益抑制的稳态的速率方程,可以估算GaAs有源区中的光强度。

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