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Sintering of Metal(100) Homoepitaxial Islands: Kink Rounding Barriers, Modified Size Scaling, and Experimental Behavior

机译:烧结金属(100)同性记岛:扭结舍入障碍,改进的大小缩放和实验行为

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Near-square islands form during sub-monolayer homoepitaxial growth on metal (100) surfaces. Diffusion of these islands after deposition leads to collision of island pairs, typically corner-to-cornet creating dumbbell-shaped clusters. Subsequent coalescence (or sintering) recovers a near-square equilibrium shape. This process is mediated by periphery diffusion (PD) and its study can provide detailed insight into the underlying dynamic processes and energetics. Atomistic modeling reveals that the size scaling of the characteristic relaxation time, τ, depends on the detailed energy barriers of various hopping processes that contribute to PD. Simulations without an extra kink or corner rounding barrier for PD reveals τ~ L~4, while behavior approaching τ~ L~3 is observed with a significant extra kink rounding barrier for PD. The latter is consistent with experimental observations for Ag/Ag(100) at 300 K.
机译:近方岛屿在金属(100)表面上的亚单层同性恋生长期间。在沉积后,这些岛屿的扩散导致岛对的碰撞,通常是角落,产生哑铃形簇。随后的聚结(或烧结)恢复近方平衡形状。该过程由周边扩散(PD)介导,其研究可以详细介绍潜在的动态过程和能量。原子制造揭示了特征松弛时间,τ的大小缩放取决于有助于PD的各种跳跃过程的详细能量屏障。没有额外的扭结或拐角圆形屏障的模拟显示τ〜1〜4,而接近τ〜l〜3的行为对于PD具有重要额外的扭结偏移屏障。后者与在300K的Ag / Ag(100)的实验观察一致。

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