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首页> 外文期刊>Journal of Applied Physics >Excitonic complexes in strain-free and highly symmetric GaAs quantum dots fabricated by filling of self-assembled nanoholes
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Excitonic complexes in strain-free and highly symmetric GaAs quantum dots fabricated by filling of self-assembled nanoholes

机译:通过填充自组装纳米孔制备的无应变且高度对称的GaAs量子点中的激子复合物

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摘要

We perform a theoretical study of the optical transitions for different excitonic complexes in highly symmetric strain-free GaAs quantum dots (QDs) fabricated by epitaxially filling nanoholes (NHs) in an AlGaAs surface. NHs are formed by local droplet etching. As a first step, we propose a QD shape modeling consistent with atomic force microscopy (AFM) profiles and an experimental growth procedure. We investigate the QD height dependence of s- and p- shell exciton recombination energies in the framework of the effective mass approximation with an exact numerical diago-nalization method. A comparison between theoretical results and available spectroscopic data is carried out. Systematic evolution of the binding energies of neutral (X), charged excitons (X~-, X~+) and the biexciton (XX), with QD height, is interpreted in terms of a balance between the Coulomb interactions and charge carrier correlation effects. Our calculations demonstrate the important role of the correlation energies in elucidating the bound character of all few-particle states especially the biexciton.
机译:我们对通过在AlGaAs表面中外延填充纳米孔(NHs)制备的高度对称的无应变GaAs量子点(QDs)中的不同激子复合物的光学跃迁进行了理论研究。 NH通过局部液滴蚀刻形成。第一步,我们提出与原子力显微镜(AFM)轮廓一致的QD形状建模和实验性生长程序。我们使用精确的数值对分方法,在有效质量近似的框架内研究了S和P壳激子复合能的QD高度依赖性。将理论结果与可用光谱数据进行比较。用库仑相互作用和电荷载流子相关效应之间的平衡来解释具有QD高度的中性(X),带电激子(X〜-,X〜+)和双激子(XX)的结合能的系统演化。我们的计算证明了相关能在阐明所有少数粒子状态(尤其是双激子)的束缚特征方面的重要作用。

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  • 来源
    《Journal of Applied Physics 》 |2017年第24期| 245702.1-245702.9| 共9页
  • 作者单位

    Laboratoire de Physique des Materiaux: Structure et Proprietes, Faculte des Sciences de Bizerte,Universite de Carthage, 7021 Zarzouna, Bizerte, Tunisia;

    Laboratoire de Physique des Materiaux: Structure et Proprietes, Faculte des Sciences de Bizerte,Universite de Carthage, 7021 Zarzouna, Bizerte, Tunisia;

    Laboratoire de Physique des Materiaux: Structure et Proprietes, Faculte des Sciences de Bizerte,Universite de Carthage, 7021 Zarzouna, Bizerte, Tunisia;

    Sorbonne Universites, UPMC Unix Paris 06, CNRS-UMR 7588, Institut des NanoSciences de Paris,F-75005 Paris, France;

    Sorbonne Universites, UPMC Unix Paris 06, CNRS-UMR 7588, Institut des NanoSciences de Paris,F-75005 Paris, France;

  • 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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