Population inversion in step quantum wells at 10 /spl mu/m wavelength

X. Zhang, G. Haddad, J. Sun, A. Kushaa, C. Sung, T. Norris
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引用次数: 2

Abstract

In this work, it is shown that population inversion can be achieved between subbands in a step quantum well with a high width ratio based on carrier capture processes. It is known that in quantum well structures, emission of LO phonons is the main carrier capture mechanism. The LO-phonon scattering rate depends on the Froelich matrix element and the overlap of the initial and final wave functions squared. In a step quantum well with a high ratio of the step width to the well width the wave function overlap of the state in the step and the state in the well is reduced and thus a longer capture time results. If the carriers of the state in the well can be removed by an adjacent quantum well by tunneling, population inversion can be realized.
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10 /spl μ m波长阶跃量子阱的居群反转
在这项工作中,证明了基于载流子捕获过程的高宽度比阶跃量子阱的子带之间可以实现种群反转。已知在量子阱结构中,LO声子的发射是主要的载流子捕获机制。lo -声子散射率取决于Froelich矩阵元素和初始波函数和最终波函数的重叠平方。在阶跃宽度与阱宽之比较高的阶跃量子阱中,阶跃态与阱态的波函数重叠减少,从而获得较长的捕获时间。如果量子阱中的载流子可以通过隧穿被相邻的量子阱移走,则可以实现种群反转。
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