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Self-organized hexagonal ordering of quantum dot arrays

机译:量子点阵列的自组织六边形排序

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摘要

We report a structure of (In, Ga)As/GaAs quantum dots which are vertically correlated and laterally aligned in a hexagonal way thus forming three-dimensionally ordered arrays. The growth pathway is based on a mechanism of self-assembly by strain-mediated multilayer vertical stacking on a planar GaAs(100) substrate, rather than molecular-beam epitaxy on a prepatterned substrate. The strain energy of lateral island-island interaction is minimum for the arrangement of hexagonal ordering. However, realization of hexagonal ordering not only depends on a complicated trade-off between lateral and vertical island-island interaction but is also related to a delicate and narrow growth kinetics window.
机译:我们报告了(In,Ga)As / GaAs量子点的结构,这些结构垂直相关并以六边形方式横向排列,从而形成三维有序阵列。生长途径基于应变介导的多层垂直堆叠在平面GaAs(100)衬底上的自组装机制,而不是预先形成图案的衬底上的分子束外延。对于六角形有序排列,横向岛-岛相互作用的应变能最小。然而,六边形有序化的实现不仅取决于横向和纵向岛-岛相互作用之间的复杂权衡,而且还涉及精细而狭窄的生长动力学窗口。

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