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Control of Optical Gain in the Active Region of Quantum Cascade Laser by Strong Perpendicular Magnetic Field

机译:通过强垂直磁场控制量子级联激光器有源区中的光学增益

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The optical gain in the active region of quantum cascade laser in an external magnetic field is analyzed. When the magnetic field is applied in the direction perpendicular to the plane of the layers, electron dispersion is broken into series of discrete Landau levels. This additional confinement strongly modifies the lifetime of electrons in the upper state of the laser transition, which is controlled by electron-phonon scattering. Landau levels are magnetically tuneable and, depending on their configuration, phonon emission is either inhibited or resonantly enhanced. This translates into a strong modulation of the population inversion, and consequently of the optical gain by varying the magnetic field. Numerical results are presented for a structure previously considered by Smirnov et al. [Phys. Rev B 66 (2002) 125317] which is designed to emit radiation at λ~11.4μm, with the magnetic field varied in the range 10-60T. The effects of band nonparabolicity are taken into account in this model.
机译:分析了外部磁场中量子级联激光器的有源区中的光学增益。当磁场在垂直于层的平面的方向上施加时,电子分散被分成一系列离散的Landau水平。这种额外的限制强烈地改变了激光转换的上部状态的电子的寿命,其由电子 - 声子散射控制。 Landau水平是磁性可调的,具体取决于它们的配置,声子排放禁止或共振增强。这将通过改变磁场来转化为群体反转的强烈调制,从而通过光学增益。以先前通过Smirnov等人考虑的结构提出了数值结果。 [物理。 Rev B 66(2002)125317设计用于在λ〜11.4μm处发射辐射,磁场在10-60t的范围内变化。在该模型中考虑了带非协调性的效果。

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