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Linear and nonlinear intersubband optical absorptions in an asymmetric rectangular quantum well

机译:非对称矩形量子阱中的线性和非线性子带间光吸收

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The linear and nonlinear intersubband optical absorptions in AlxlGa1-xlAs/GaAs/AlxrGa1-xrAs asymmetric rectangular quantum well are studied within the framework of the density matrix formalism. We have calculated the electron energy levels and the envelope wave functions using the effective mass approach. In addition, we have obtained an expression for saturation intensity. It is shown that the parameters such as asymmetry and width of potential well not only shift the peak positions in absorption spectrum but also considerably modify their height. These results suggest that the absorption process can be easily controlled by the structure parameters of an asymmetric rectangular quantum well. Also, the incident optical intensity has a great effect on the total absorption spectrum. We have seen that the absorption peak is reduced by half when the optical intensity is approximately 0.8 MW/cm(2) for well width L = 90 angstrom and beta = 0.5. Moreover, it is seen that the saturation intensity is quite sensitive to the structure parameters of an asymmetric rectangular quantum well. Thus, the results presented here can be useful for electro-optical modulators and photodetectors in the infrared region.
机译:在密度矩阵形式的框架内研究了AlxlGa1-xlAs / GaAs / AlxrGa1-xrAs不对称矩形量子阱中的线性和非线性子带间光吸收。我们已经使用有效质量方法计算了电子能级和包络波函数。另外,我们获得了饱和强度的表达式。结果表明,诸如不对称性和电位宽度之类的参数不仅可以很好地移动吸收光谱中的峰位置,而且可以极大地改变其高度。这些结果表明,吸收过程可以很容易地通过不对称矩形量子阱的结构参数来控制。而且,入射光强度对总吸收光谱有很大的影响。我们已经看到,对于井宽L = 90埃和β= 0.5,当光强度约为0.8 MW / cm(2)时,吸收峰减少一半。此外,可以看出,饱和强度对非对称矩形量子阱的结构参数非常敏感。因此,此处介绍的结果对于红外区域中的电光调制器和光电检测器可能有用。

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