论文标题

相位场晶体模型的体积无定形相的热力学,形成动力学和结构相关性

Thermodynamics, formation dynamics and structural correlations in the bulk amorphous phase of the phase-field crystal model

论文作者

Abdalla, Shaho, Archer, Andrew J., Gránásy, László, Tóth, Gyula I.

论文摘要

我们研究了相位晶体(PFC)模型框架中无定形固体的体积热力学和微观结构特性。这些是亚稳态状态,其密度分布没有远距离顺序。从广泛的数值模拟中,我们确定自由能密度值在不同尺寸的无定形系统中的分布以及点对集的相关长度,这是一个最大体积的无定形体积的半径,而在所选体积的表面上仍在粒子排序确定的粒子中仍具有粒子的排列。我们发现,在热力学极限中,无定形的自由能密度倾向于一个对形成的初始状态有略有依赖的值 - 即,它具有地层历史记录依赖性。观察到无定形相在液态线性稳定性极限的两侧形成,表明液体向无定形过渡是一阶,当液体可稳定时,液体向无定形的过渡是一阶,并具有相关的有限自由能屏障。在我们的模拟中,当使用初始密度分布中的噪声来诱导亚稳态液体诱导成核事件时,这证明了这一点。根据初始噪声的强度,我们观察到多种成核途径,与PFC模型的先前结果一致,并且表明在胶体系统中可能发生无形前体介导的多步晶体成核。

We investigate bulk thermodynamic and microscopic structural properties of amorphous solids in the framework of the phase-field crystal (PFC) model. These are metastable states with a non-uniform density distribution having no long-range order. From extensive numerical simulations we determine the distribution of free energy density values in varying size amorphous systems and also the point-to-set correlation length, which is the radius of the largest volume of amorphous one can take while still having the particle arrangements within the volume determined by the particle ordering at the surface of the chosen volume. We find that in the thermodynamic limit, the free energy density of the amorphous tends to a value that has a slight dependence on the initial state from which it was formed -- i.e.\ it has a formation history dependence. The amorphous phase is observed to form on both sides of the liquid linear-stability limit, showing that the liquid to amorphous transition is first order, with an associated finite free energy barrier when the liquid is metastable. In our simulations this is demonstrated when noise in the initial density distribution is used to induce nucleation events from the metastable liquid. Depending on the strength of the initial noise, we observe a variety of nucleation pathways, in agreement with previous results for the PFC model, and which show that amorphous precursor mediated multi-step crystal nucleation can occur in colloidal systems.

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