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Morphology and topology in coarsening of domains via non-conserved and conserved dynamics

机译:通过非保守和保守动力学粗化域的形态和拓扑

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摘要

We investigate the late-stage coarsening of three-dimensional two-phase structures using non-conserved and conserved dynamics. Mixtures with a volume fraction of a phase of 50% are studied for non-conserved and conserved dynamics, and systems with volume fractions of 22%, 30%, 36%, and 40% are studied for conserved dynamics. The morphology and topology are quantified using the interfacial shape distribution and the genus, respectively. For systems with 50% volume fraction evolving via both dynamics and 36% and 40% mixtures evolving via conserved dynamics, we find that domains are bicontinuous and have time-invariant scaled morphologies and topologies. Each bicontinuous mixture yields a unique scaled interfacial shape distribution. However, all these mixtures have similar scaled topologies, yielding similar values (0.134 ± 0.004) in the scaled genus density. Additionally, these bicontinuous mixtures are different from the topology of Schoen's G surface that has been considered previously as a good model for such bicontinuous mixtures. For volume fractions of 22% and 30%, the mixtures are not bicontinuous.
机译:我们研究使用非守恒和守恒动力学的三维两相结构的后期粗化。研究了体积分数为50%的混合物的非守恒和守恒动力学,研究了体积分数为22%,30%,36%和40%的系统的守恒动力学。分别使用界面形状分布和属来量化形态和拓扑。对于具有50%的体积分数通过动力学演化而36%和40%的混合物通过守恒动力学演化的系统,我们发现域是双连续的,并且具有随时间变化的缩放形态和拓扑。每个双连续混合物产生独特的成比例的界面形状分布。但是,所有这些混合物具有相似的按比例缩放的拓扑,在按比例缩放的属密度上产生相似的值(0.134±0.004)。此外,这些双连续混合物与Schoen G表面的拓扑结构不同,后者以前被认为是此类双连续混合物的良好模型。对于22%和30%的体积分数,混合物不是双连续的。

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