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Electron-phonon relaxation rates and optical gain in a quantum cascade laser in a magnetic field

机译:磁场中量子级联激光器中的电子 - 声子弛豫速率和光学增益

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摘要

We present a model for calculating the optical gain in a midinfrared GaAs/AlGaAs quantum cascade laser in a magnetic field, based on solving the set of rate equations that describe the carrier density in each level, accounting for the optical- and acoustic-phonon scattering processes. The confinement caused by the magnetic field strongly modifies the lifetimes of electrons in the excited state and results in pronounced oscillations of the optical gain as a function of the field. Numerical results are presented for the structure designed to emit at lambda~11.4 µm, with the magnetic field varying in the range of 10–60 T. The effects of band nonparabolicity are also included. © 2005 American Institute of Physics.
机译:我们提出了一个模型,用于计算磁场中的中红外GaAs / AlGaAs量子级联激光器中的光学增益,该模型基于求解速率方程组来描述各个级别的载流子密度,并考虑了光子和声子的声子散射流程。由磁场引起的限制极大地改变了处于激发态的电子的寿命,并导致光增益随磁场的变化而明显振荡。给出了设计为在λ〜11.4 µm处发射的结构的数值结果,磁场在10–60 T范围内变化。还包括了带非抛物线效应。 ©2005美国物理研究所。

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