Gulam Razul M S, Hendry J G, Kusalik P G
Department of Chemistry, Dalhousie University, Halifax, Nova Scotia B3H 4J3, Canada.
J Chem Phys. 2005 Nov 22;123(20):204722. doi: 10.1063/1.2125688.
In this paper we analyze the atomic-level structure of solid/liquid interfaces of Lennard-Jones fcc systems. The 001, 011, and 111 faces are examined during steady-state growth and melting of these crystals. The mechanisms of crystallization and melting are explored using averaged configurations generated during these steady-state runs, where subsequent tagging and labeling of particles at the interface provide many insights into the detailed atomic behavior at the freezing and melting interfaces. The interfaces are generally found to be rough and we observe the structure of freezing and melting interfaces to be very similar. Large structural fluctuations with solidlike and liquidlike characteristics are apparent in both the freezing and melting interfaces. The behavior at the interface observed under either growth or melting conditions reflects a competition between ordering and disordering processes. In addition, we observe atom hopping that imparts liquidlike characteristics to the solid side of the interfaces for all three crystal faces. Solid order is observed to extend as rough, three-dimensional protuberances through the interface, particularly for the 001 and 011 faces. We are also able to reconcile our different measures for the interfacial width and address the onset of asymmetry in the growth rates at high rates of crystal growth/melting.
在本文中,我们分析了 Lennard-Jones 面心立方系统固/液界面的原子级结构。在这些晶体的稳态生长和熔化过程中,对(100)、(011)和(111)面进行了研究。利用这些稳态运行过程中生成的平均构型来探索结晶和熔化的机制,其中对界面处粒子的后续标记和标注为冻结和熔化界面处详细的原子行为提供了许多见解。通常发现界面是粗糙的,并且我们观察到冻结和熔化界面的结构非常相似。在冻结和熔化界面中,具有类似固体和类似液体特征的大尺度结构波动都很明显。在生长或熔化条件下观察到的界面行为反映了有序和无序过程之间的竞争。此外,我们观察到原子跳跃,这使得所有三个晶面的界面固体侧都具有类似液体的特征。观察到固体有序以粗糙的三维凸起形式穿过界面延伸,特别是对于(100)和(011)面。我们还能够协调我们对界面宽度的不同测量方法,并解决在高晶体生长/熔化速率下生长速率不对称性的起始问题。