外加磁场下含给体杂质核壳量子反点的光吸收

V. Holovatsky, M. Chubrei, V. Ivanko
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引用次数: 0

摘要

计算了磁场和偏心给体杂质对倒转核壳量子点中电子能谱和波函数的影响。在此基础上,利用无扰动纳米体系中的精确电子波函数,用矩阵法研究了含杂质多层量子点的结合能和电磁波吸收系数对磁场感应强度的依赖关系。考虑了所有可能的带内量子跃迁,计算了线性、三阶非线性和全光吸收系数。观察到施主位置、磁场和核尺寸对结合能和光吸收系数的综合影响。结果表明,这些效应对施主结合能和光吸收系数产生了显著的影响
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical Absorption in Core-Shell Quantum Antidot with Donor Impurity under Applied Magnetic Field
The influence of the magnetic field and off-central donor impurity on the energy spectrum and wave functions of an electron in the inverted core-shell QD are calculated. On this basis, the dependence of the binding energy and the absorption coefficient of electromagnetic waves by multilayer QD with an impurity on the magnetic field induction are investigated within the approximation of the effective mass and the rectangular potential profile of the nanosystem by the matrix method using the exact electron wave functions in nanosystem without perturbations.The linear, third-order nonlinear and total optical absorption coefficients (OACs) are calculated taking into account all possible intraband quantum transitions. The combined effect of donor position, magnetic field and core size on binding energies and optical absorption coefficients is observed. The results show that these effects cause significant changes on donor binding energy and optical absorption coefficient
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