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Influence of the active region design on output characteristics of GaAs/AlGaAs quantum cascade lasers in a strong magnetic field

机译:有源区设计对强磁场中GaAs / AlGaAs量子级联激光器输出特性的影响

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摘要

We describe the application of our computational model, developed for finding the optical gain in a mid-infrared quantum cascade laser subjected to a strong magnetic field, to two distinct λ ~ 9 μm GaAs-based structures. The additional carrier confinement induced by the field alters the transition rates for the optical- and acoustic-phonon scattering processes from the upper laser level, thus affecting the laser output properties, in particular the optical gain. Within this model, the gain is found by solving the system of rate equations, from which the carrier densities in each level are calculated. Numerical results are presented for magnetic fields between 10 and 60 T, and the band nonparabolicity is taken into account.
机译:我们描述了我们的计算模型的应用,该模型是为寻找受到强磁场作用的中红外量子级联激光器中的光学增益而开发的,它适用于两种不同的λ〜9μmGaAs基结构。由场引起的额外的载流子限制改变了光学和声子声子散射过程从较高激光能级的跃迁速率,从而影响了激光输出特性,特别是光学增益。在该模型中,通过求解速率方程式系统可找到增益,由此可计算出每个级的载流子密度。给出了10至60 T之间磁场的数值结果,并考虑了带非抛物线性。

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