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施加电场和磁场下的金字塔形核壳量子点

Pyramidal core-shell quantum dot under applied electric and magnetic fields.

作者信息

Osorio J A, Caicedo-Paredes D, Vinasco J A, Morales A L, Radu A, Restrepo R L, Martínez-Orozco J C, Tiutiunnyk A, Laroze D, Hieu Nguyen N, Phuc Huynh V, Mora-Ramos M E, Duque C A

机构信息

Grupo de Materia Condensada-UdeA, Instituto de Física, Facultad de Ciencias Exactas y Naturales, Universidad de Antioquia UdeA, Calle 70 No. 52-21, Medellín, Colombia.

Facultad de Ingeniería, Universidad de Antioquia UdeA, Calle 70 No. 52-21, Medellín, Colombia.

出版信息

Sci Rep. 2020 Jun 2;10(1):8961. doi: 10.1038/s41598-020-65442-x.

Abstract

We have theoretically investigated the electronic states in a core/shell pyramidal quantum dot with GaAs core embedded in AlGaAs matrix. This system has a quite similar recent experimental realization through a cone/shell structure [Phys. Status Solidi-RRL 13, 1800245 (2018)]. The research has been performed within the effective mass approximation taking into account position-dependent effective masses and the presence of external electric and magnetic fields. For the numerical solution of the resulting three-dimensional partial differential equation we have used a finite element method. A detailed study of the conduction band states wave functions and their associated energy levels is presented, with the analysis of the effect of the geometry and the external probes. The calculation of the non-permanent electric polarization via the off-diagonal intraband dipole moment matrix elements allows to consider the related optical response by evaluating the coefficients of light absorption and relative refractive index changes, under different applied magnetic field configurations.

摘要

我们从理论上研究了嵌入在AlGaAs基体中的具有GaAs核的核/壳金字塔形量子点中的电子态。通过锥/壳结构,该系统近期已有十分相似的实验实现[《固体物理-快速研究通讯》13, 1800245 (2018)]。研究是在有效质量近似下进行的,考虑了位置相关的有效质量以及外部电场和磁场的存在。对于所得三维偏微分方程的数值解,我们采用了有限元方法。本文详细研究了导带态波函数及其相关能级,并分析了几何结构和外部探针的影响。通过非对角带内偶极矩矩阵元计算非永久电极化,能够在不同的外加磁场配置下,通过评估光吸收系数和相对折射率变化来考虑相关的光学响应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fb4/7265358/70f892f25ea1/41598_2020_65442_Fig1_HTML.jpg

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