ZnTe/CdSe type-II core/shell spherical quantum dot under an external electric field

A. Chafai
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引用次数: 2

Abstract

We have investigated in the framework of the envelope function approximation and taking into account the dependence of the electron effective mass on radius the energy of an electron inside a ZnTe/CdSecore/shell spherical quantum dot. In order to make the problem more realistic, we describe the conduction band-edge alignment between core and shell materials by a finite height barrier. By applying the Ritz variational principle the effect of the electric field on the electronic states was also examined. Our numerical results show the opportunity to control the energy states position of the charge carriers inside our core/shell nanostructures by controlling the size (core radius, shell thickness) of the nanostructure and the strength of the external electric field. #CORE/SHELL MATERIALS #NANOSTRUCTURES #QUANTUM DOTS #ELECTRIC FIELD
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外加电场作用下的ZnTe/CdSe型核/壳球形量子点
我们研究了包络函数近似的框架,并考虑了电子有效质量对ZnTe/CdSecore/壳球形量子点内电子能量半径的依赖。为了使问题更加现实,我们用有限高度的障壁来描述芯壳材料之间的导带边缘对准。应用里兹变分原理,考察了电场对电子态的影响。我们的数值结果表明,通过控制纳米结构的尺寸(核半径、壳层厚度)和外电场的强度,可以控制我们的核/壳纳米结构中载流子的能态位置。#核/壳材料#纳米结构#量子点#电场
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