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Photoionization cross section and binding energy of single dopant in hollow cylindrical core/shell quantum dot

机译:空心圆柱核/壳量子点中单一掺杂剂的光电离截面和结合能

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摘要

In this study, we have investigated the confined donor impurity in a hollow cylindrical-shell quantum dot. The charges are assumed to be completely confined to the interior of the shell with rigid walls. Within the framework of the effective-mass approximation and by using a simple variational approach, we have computed the donor binding energy as a function of the shell sizes in order to study the behavior of the electron-impurity attraction for a very small thickness. Our results show that the binding energy of a donor impurity placed at the center of cylindrical core/shell dots depends strongly on the shell size. The binding energy increases when the shell-wideness becomes smaller and shows the same behavior as in a simple cylindrical quantum dot. A special case has been studied, which corresponds to the ratio between the inner and outer radii near to one (a/b -► 1) for which our model gives a non-significant behavior of the impurity binding energy. This fact implies the existence of a critical value (a/b) for which the binding energy of the donor impurity tends to the limit value of 4 effective Rydbergs as in a 2D quantum well. We also analyse the photoionization cross section considering only the in-plane incident radiation polarization. We determine its behavior as a function of photon energy, shell size, and donor position. The measurement of photoionization in such systems would be of great interest to understand the optical properties of carriers in quantum dots.
机译:在这项研究中,我们研究了空心圆柱壳量子点中的受限施主杂质。假定电荷完全限制在带有刚性壁的壳体内部。在有效质量近似的框架内,并通过使用简单的变分方法,我们已经计算了供体结合能与壳尺寸的关系,以便研究非常薄的厚度的电子杂质吸引行为。我们的结果表明,位于圆柱核/壳点中心的施主杂质的结合能在很大程度上取决于壳的大小。当壳宽变小时,结合能增加,并且表现出与简单圆柱量子点相同的行为。已经研究了一种特殊情况,该情况对应于内半径和外半径之间的比率接近一个(a / b-►1),我们的模型为此给出了不显着的杂质结合能行为。这个事实意味着存在一个临界值(a / b),供体杂质的结合能倾向于达到2D量子阱中4个有效Rydbergs的极限值。我们还仅考虑面内入射辐射极化来分析光电离截面。我们确定其行为是光子能量,壳大小和施主位置的函数。在这样的系统中光电离的测量对于理解量子点中载流子的光学性质将是非常重要的。

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  • 来源
    《Journal of Applied Physics》 |2017年第6期|064303.1-064303.8|共8页
  • 作者单位

    Groupe d' Optoélectronique des Boites Quantiques de Semiconducteurs, Ecole Normale Supérieure de I'Enseignement Technique, Mohammed V University in Rabat, Morocco ,LCP-A2MC, Institut de Chimie, Physique et Matériaux Université de Lorraine, Metz, France;

    Groupe d' Optoélectronique des Boites Quantiques de Semiconducteurs, Ecole Normale Supérieure de I'Enseignement Technique, Mohammed V University in Rabat, Morocco;

    LCP-A2MC, Institut de Chimie, Physique et Matériaux Université de Lorraine, Metz, France;

    Universidad EIA, CP 055428, Envigado, Colombia;

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

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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