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Effect of position-dependent effective mass on linear and nonlinear optical properties of a cubic quantum dot

机译:位置相关有效质量对立方量子点的线性和非线性光学性质的影响

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摘要

In this paper, we first obtain an analytic relation for studying the position-dependent effective mass in a GaAs/Al_xGa_(1-x)As cubic quantum dot. Then, the effect of position-dependent effective mass on the intersubband optical absorption coefficient and the refractive index change in the quantum dot are studied. Our numerical calculations are performed using both a constant effective mass and the position-dependent effective mass. We calculate the linear, nonlinear and total intersubband absorption coefficient and refractive index change as a function of the incident optical intensity and structural parameters such as dot length. The results obtained from the present work show that spatially varying electron effective mass plays an important role in the intersubband optical absorption coefficient and refractive index change in a cubic quantum dot.
机译:在本文中,我们首先获得解析关系,以研究GaAs / Al_xGa_(1-x)As立方量子点中与位置有关的有效质量。然后,研究了位置相关有效质量对子带间光吸收系数和量子点中折射率变化的影响。我们的数值计算是使用恒定有效质量和位置相关有效质量进行的。我们根据入射光强度和结构参数(如点长)计算线性,非线性和总子带间吸收系数和折射率变化。从目前的工作中获得的结果表明,空间变化的电子有效质量在立方量子点的子带间光吸收系数和折射率变化中起着重要作用。

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