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首页> 外文期刊>Applied Surface Science >Kinetic Monte Carlo simulations of the diffusion and shape evolution of single-layer clusters on a hexagonal lattice with and without external force
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Kinetic Monte Carlo simulations of the diffusion and shape evolution of single-layer clusters on a hexagonal lattice with and without external force

机译:动力学蒙特卡罗模拟单层簇的扩散和形状演化,六边形格子与外力

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摘要

In this work we investigate the diffusion of 2D surface islands and voids as a result of atomic diffusion on terraces, by kinetic Monte Carlo simulations based on a hexagonal lattice. We show that the diffusion coefficient of small clusters strongly depends on their size and does not follow a monotonic law. In particular, the diffusion coefficient of small voids increases with the cluster size, reaches a plateau and then decreases. We also study the displacement velocity of clusters when a force biases the probability of the atomic jump direction. We show how the cluster velocity depends on the force and on the cluster size. According to the force direction and amplitude, the shapes of the clusters can be strongly modified.
机译:在这项工作中,通过基于六边形格的动力学蒙特卡罗模拟,研究了2D表面岛和空隙的扩散。 我们表明小型集群的扩散系数强烈取决于其尺寸,并不遵循单调法。 特别地,小空隙的扩散系数随着簇大小而增加,达到高原然后减少。 当力偏置原子跳跃方向的概率时,我们还研究了簇的位移速度。 我们展示了群集速度如何取决于力和群集大小。 根据力方向和幅度,可以强烈地修改簇的形状。

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