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Equilibrium shape and size of supported heteroepitaxial nanoislands

机译:支撑的异质外延纳米岛的平衡形状和大小

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We study the equilibrium shape, shape transitions and optimal size of strained heteroepitaxial nanoislands with a two-dimensional atomistic model using simply adjustable interatomic pair potentials. We map out the global phase diagram as a function of substrate-adsorbate misfit and interaction. This phase diagram reveals all the phases corresponding to different well-known growth modes. In particular, for large enough misfits and attractive substrate there is a Stranski-Krastanow regime, where nano-sized islands grow on top of wetting films. We analyze the various terms contributing to the total island energy in detail, and show how the competition between them leads to the optimal shape and size of the islands. Finally, we also develop an analytic interpolation formula for the various contributions to the total energy of strained nanoislands.
机译:我们使用简单可调的原子间对势,利用二维原子模型研究了应变异质外延纳米岛的平衡形状,形状转变和最佳尺寸。我们根据底物-吸附物错配和相互作用绘制了整体相图。该相图揭示了与不同的众所周知的生长模式相对应的所有相。特别是,对于足够大的失配和有吸引力的基材,有Stranski-Krastanow制度,其中纳米尺寸的岛生长在润湿膜的顶部。我们将详细分析影响整个岛屿能源的各种术语,并说明它们之间的竞争如何导致最佳的岛屿形状和大小。最后,我们还为解析的纳米岛的总能量提供了各种贡献的解析插值公式。

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