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Geometric simulation and surface statistics of coarsening faceted surfaces

机译:粗化多面曲面的几何模拟和表面统计

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摘要

We introduce a general-purpose computational geometry tool for simulating the evolution of single-crystal, threefold-symmetric, 2 + 1D coarsening faceted surfaces z = h(x,y, t). By explicitly tracking the interface with an efficient three-component facet/edge/junction structure, rapid simulations of tens of thousands of facets are realized. Topological rearrangements of the surface, including coarsening events caused by facets merging or vanishing, are treated explicitly using a priori knowledge of the outcome of each event. The speed and flexibility of the resulting method allows the easy extraction of reliable surface statistics describing complex interface morphology. The method is demonstrated using a sample facet dynamics, under which surfaces totaling one million facets are simulated to study the statistics of the emerging dynamically scaling state.
机译:我们引入了一种通用的计算几何工具,用于模拟单晶、三重对称、2 + 1D 粗化刻面表面 z = h(x,y, t) 的演化。通过采用高效的三分量小平面/边/结结构显式跟踪界面,实现了数万个小平面的快速仿真。曲面的拓扑重排,包括由小平面合并或消失引起的粗化事件,使用对每个事件结果的先验知识进行显式处理。所得方法的速度和灵活性允许轻松提取描述复杂界面形态的可靠表面统计数据。该方法使用样本小平面动力学进行演示,在该模型下,模拟了总计100万个小平面的表面,以研究新兴动态缩放状态的统计量。

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