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Evidence for Family-Meakin Dynamical Scaling in Island Growth and Coalescence during Vapor Phase Deposition

机译:汽相沉积过程中岛生长和合并中的家庭-微机动态缩放的证据。

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摘要

Using real-time grazing-incidence small-angle x-ray scattering, we find that the processes of island formation and coalescence during the room-temperature vapor phase deposition of aluminum lead to dynamical scaling of the evolving surface morphology. The scaling is quantitatively consistent with the self-similarity predicted by the Family-Meakin model, which was developed to describe liquid droplet deposition, growth, and coalescence. The Family-Meakin model assumes only that atomic diffusion over the substrate between islands or droplets is negligible and that diffusion between impinging islands or droplets is sufficient to give complete coalescence. Therefore the dynamical scaling morphology evolution identified here may be common in the initial stages of those solid film growth processes which proceed by island formation and growth.
机译:使用实时掠入射小角度X射线散射,我们发现铝的室温气相沉积过程中岛形成和聚结的过程导致了不断演变的表面形态的动态缩放。该比例在数量上与Family-Meakin模型预测的自相似性一致,该模型被开发用来描述液滴的沉积,生长和聚结。 Family-Meakin模型仅假设原子在岛或小滴之间在基板上的扩散微不足道,并且撞击的岛或小滴之间的扩散足以产生完全的聚结。因此,此处确定的动态定标形态演变可能在那些通过岛形成和生长进行的固体膜生长过程的初始阶段很常见。

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