AlGaAs/GaAs对称双半抛物量子阱激光器光增益研究

A. Keshavarz, N. Zamani, F. Emami
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摘要

本文计算了典型GaAs/AlxGa1-xAs对称双半抛物量子阱激光器的光学增益。为此,对Schrödinger方程进行了数值求解,得到了双半抛物量子阱中电子和空穴的能级及其对应的波函数。利用结果得到了该纳米结构的光学增益。研究了阻挡层厚度、阱宽度、Al成分、载流子密度等材料参数以及温度、压力等外部参数对光学增益系数的影响。数值结果清楚地表明,增加载流子浓度、增加阱宽度、减小势垒厚度、降低温度和压力可以增加光增益。最后,我们介绍了量子阱的最佳结构,以获得最大的光增益,为量子阱激光器的设计提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of optical gain in AlGaAs/GaAs symmetric double semi-parabolic quantum well laser
In this paper, the optical gain in symmetric double semi-parabolic quantum well laser is calculated for typical GaAs/AlxGa1-xAs. For this purpose, numerical solution of the Schrödinger equation is done in order to obtain the energy levels and their corresponding wave functions of electrons and holes in double semi-parabolic quantum well. Results are used to obtain the optical gain of this nanostructure. The effects of material parameters such as thickness of the barrier and width of the wells, Al composition and density of the carriers as well as external parameters such as temperature and pressure on the optical gain coefficient are investigated. Numerical results clearly show that by increasing of carrier concentration, wells width and decreasing the thickness of barrier, temperature and pressure the optical gain increases. Finally, we introduce the optimum structure of quantum well to obtain the maximum optical gain, which can be useful for quantum well laser designing.
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