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Calculations of spectral and optical characteristics of spheroidal quantum dot ensembles

机译:球形量子点集合的光谱和光学特性的计算

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In the effective mass approximation for electron (hole) states of a spheroidal quantum dot with and without external fields the perturbation theory schemes are constructed in the framework of the Kantorovich and adiabatic methods. The eigenvalues and eigenfunctions of the problem, obtained in both analytical and numerical forms, are applied to the analysis of the absorption coefficient for an ensemble of spheroidal quantum dots with random dimensions of the minor semiaxis and with parabolic or non-parabolic dispersion laws for holes and electrons, affected by a homogeneous electric field, i.e., the quantum-confined Stark effect.
机译:在具有和不具有外部场的球形量子点的电子(空穴)状态的有效质量近似中,在Kantorovich和绝热方法的框架内构造了扰动理论方案。以解析和数值形式获得的问题的本征值和本征函数,被用于分析球状量子点的集合的吸收系数,该球状量子点具有短半轴的随机尺寸,并且具有抛物线或非抛物线的色散定律受均匀电场(即量子受限斯塔克效应)影响的电子和电子。

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