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Atomic Scale Surface Structure and Morphology of InAs Nanowire Crystal Superlattices: The Effect of Epitaxial Overgrowth

机译:Inas纳米线晶体超晶格的原子尺度表面结构和形貌:外延过度生长的影响

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摘要

While shell growth engineering to the atomic scale is important for tailoring semiconductor nanowires with superior properties, a precise knowledge of-the surface structure and morphology at different stages of this type of overgrowth has been lacking. We present a systematic scanning tunneling microscopy (STM) study of homoepitaxial Shell growth of twinned superlattices in zinc blende InAs nanowires that transforms {11I}A/B-type facets to the nonpolar {110}type. STM imaging along the nanowires provides information on different stages of the shell growth revealing distinct differences in growth dynamics of the crystal facets and surface structures not found in the bulk. While growth of a new surface layer is initiated simultaneously (at the twin plane interface) on the {111}A and {111}B nanofacets, the step flow growth proceeds much faster on {111}A compared to {111}B leading to significant differences in roughness. Further, we observe that the atomic scale structures on the {111}B facet is different from its bulk counterpart and that shell growth on this facet occurs via steps perpendicular to the (112)B-type directions.
机译:尽管对于原子尺度的壳生长工程对于定制具有优异性能的半导体纳米线很重要,但仍缺乏对这种过度生长的不同阶段的表面结构和形态的精确了解。我们介绍了锌共混InAs纳米线中的孪晶超晶格的同质外延壳生长的系统扫描隧道显微镜(STM)研究,该混合物将{11I} A / B型晶面转变为非极性{110}型。沿着纳米线的STM成像可提供有关壳生长不同阶段的信息,揭示出在本体中未发现的晶体刻面和表面结构的生长动力学存在明显差异。在{111} A和{111} B纳米面上同时(在双平面界面处)开始新表面层的生长时,与{111} B相比,{111} A上的步流生长快得多,导致粗糙度差异显着。此外,我们观察到{111} B小平面上的原子尺度结构与其本体对应结构不同,并且该小平面上的壳生长是通过垂直于(112)B型方向的台阶而发生的。

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