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Stochastic phase segregation on surfaces

机译:表面上的随机相偏析

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摘要

Phase separation and coarsening is a phenomenon commonly seen in binary physical and chemical systems that occur in nature. Often, thermal fluctuations, modelled as stochastic noise, are present in the system and the phase segregation process occurs on a surface. In this work, the segregation process is modelled via the Cahn–Hilliard–Cook model, which is a fourth-order parabolic stochastic system. Coarsening is analysed on two sample surfaces: a unit sphere and a dumbbell. On both surfaces, a statistical analysis of the growth rate is performed, and the influence of noise level and mobility is also investigated. For the spherical interface, it is also shown that a lognormal distribution fits the growth rate well.
机译:相分离和粗化是自然界中存在的二元物理和化学系统中常见的现象。通常,系统中会出现以随机噪声为模型的热波动,并且相分离过程发生在表面上。在这项工作中,隔离过程是通过Cahn–Hilliard–Cook模型建模的,该模型是四阶抛物线型随机系统。在两个样本表面上分析粗化:一个单位球和一个哑铃。在两个表面上,都对增长率进行了统计分析,并且还研究了噪声水平和迁移率的影响。对于球形界面,还显示对数正态分布很好地拟合了增长率。

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