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Effects of elastic anisotropy on the self-organized ordering of quantum dot superlattices

机译:弹性各向异性对量子点超晶格自组织有序性的影响

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摘要

The vertical and lateral ordering of quantum dot superlattices is dependent on the elastic stress/strain fields induced by the buried quantum dots within the previous superlattice layers. It has been found that quantum dots may be vertically correlated or may exhibit anti-correlation for different material systems. These differences are caused by the elastic anisotropy as well as the crystallographic orientation of the materials. The finite element method is used in this work to investigate the effects of anisotropy of the elastic property and cry strain orientation on the elasto static fields of quantum dot superlattices. The strain energy density distribution obtained from the calculations can be used to deduce the locations whereby subsequent quantum dot islands will nucleate by locating the minima positions. A tetragonal body centred arrangement is observed for the CdSe/ZnSe(001) system with a sufficiently thick spacer layer. Through comparison with a less anisotropic system (InAs/GaAs), it is shown that an increase in the degree of anisotropy favours an anti-correlated island growth. Spatial correlation in different crystal orientations is also investigated and discussed.
机译:量子点超晶格的垂直和横向排序取决于先前的超晶格层内的埋入量子点所引起的弹性应力/应变场。已经发现,对于不同的材料系统,量子点可以垂直相关或可以表现出反相关。这些差异是由材料的弹性各向异性和晶体学取向引起的。在这项工作中使用有限元方法来研究弹性的各向异性和结晶应变取向对量子点超晶格的弹性静态场的影响。从计算中获得的应变能密度分布可用于推导位置,由此随后的量子点岛将通过定位最小位置而成核。对于具有足够厚的间隔层的CdSe / ZnSe(001)系统,观察到四边形的居中排列。通过与各向异性较小的系统(InAs / GaAs)进行比较,可以看出各向异性程度的提高有利于反相关岛的生长。还研究和讨论了不同晶体取向的空间相关性。

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