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Directed self-assembly of quantum structures by nanomechanical stamping using probe tips

机译:通过使用探针的纳米机械压印指导量子结构的自组装

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We demonstrate that nanomechanically stamped substrates can be used as templates to pattern and direct the self-assembly of epitaxial quantum structures such as quantum dots. Diamond probe tips are used to indent or stamp the surface of GaAs( 100) to create nanoscale volumes of dislocation-mediated deformation, which alter the growth surface strain. These strained sites act to bias nucleation, hence allowing for selective growth of InAs quantum dots. Patterns of quantum dots are observed to form above the underlying nanostamped template. The strain state of the patterned structures is characterized by micro-Raman spectroscopy. The potential of using nanoprobe tips as a quantum dot nanofabrication technology are discussed.
机译:我们证明纳米机械冲压的衬底可以用作模板来图案化和指导诸如量子点的外延量子结构的自组装。金刚石探针头用于压入或压印GaAs(100)的表面,以产生位错介导的形变的纳米级体积,从而改变生长表面的应变。这些应变位点起着使成核偏向的作用,因此允许InAs量子点的选择性生长。观察到量子点的图案在下面的纳米标记模板上方形成。图案化结构的应变状态通过微拉曼光谱法表征。讨论了使用纳米探针尖端作为量子点纳米制造技术的潜力。

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