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Dynamic reconfiguration of van der Waals gaps within GeTe-Sb2Te3 based superlattices

机译:范德瓦耳斯的动态重配置缺口在基于GeTe-Sb2Te3超晶格

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Phase-change materials based on GeSbTe show unique switchable optoelectronic properties and are an important contender for next-generation non-volatile memories. Moreover, they recently received considerable scientific interest, because it is found that a vacancy ordering process is responsible for both an electronic metal-insulator transition and a structural cubic-to-trigonal transition. GeTe Sb2Te3 based superlattices, or specifically their interfaces, provide an interesting platform for the study of GeSbTe alloys. In this work such superlattices have been grown with molecular beam epitaxy and they have been characterized extensively with transmission electron microscopy and X-ray diffraction. It is shown that the van der Waals gaps in these superlattices, which result from vacancy ordering, are mobile and reconfigure through the film using bi-layer defects and Ge diffusion upon annealing. Moreover, it is shown that for an average composition that is close to GeSb2Te4 a large portion of 9-layered van der Waals systems is formed, suggesting that still a substantial amount of random vacancies must be present within the trigonal GeSbTe layers. Overall these results illuminate the structural organization of van der Waals gaps commonly encountered in GeSbTe alloys, which are intimately related to their electronic properties and the metal-insulator transition.
机译:基于GeSbTe展示独特的相变材料可切换的光电性质和一个下一代的重要竞争者非易失性记忆。收到相当大的科学兴趣,因为它是发现一个空缺排序过程是负责两个电子金属绝缘体转变和结构cubic-to-trigonal过渡。超晶格或明确它们的接口,提供了一个有趣的研究平台GeSbTe合金。与分子束外延和发展他们已经广泛的特点透射电子显微镜和x射线衍射。由于这些超晶格的缺口空置命令,移动和重新配置通过这部电影使用双向层缺陷和通用电气扩散退火。平均成分接近GeSb2Te4 9-layered范德的很大一部分瓦尔斯系统形成,表明仍然大量的随机的空缺必须现在在三角形GeSbTe层。这些结果说明结构范德瓦耳斯组织一般差距中遇到GeSbTe合金,他们的电子属性密切相关和金属绝缘体转变。

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