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Diffusion and interactions of point defects in hard-sphere crystals

机译:硬球晶体点缺陷的扩散和相互作用

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Using computer simulations, we study the diffusion, interactions, and strain fields of point defects in a face-centered-cubic crystal of hard spheres. We show that the vacancy diffusion decreases rapidly as the density is increased, while the interstitial diffusion exhibits a much weaker density-dependence. Additionally, we predict the free-energy barriers associated with vacancy hopping and find that the increasing height of the free-energy barrier is solely responsible for the slowing down of vacancy diffusion. Moreover, we find that the shape of the barriers is independent of the density. The interactions between vacancies are shown to be weakly attractive and short-ranged, while the interactions between interstitials are found to be strongly attractive and are felt over long distances. As such, we find that vacancies do not form vacancy clusters, while interstitials do form long-lived interstitial clusters. Considering the strain field of vacancies and interstitials, we argue that vacancies will hardly feel each other, as they do not substantially perturb the crystal, and as such exhibit weak interactions. Two interstitials, on the other hand, interact with each other over long distances and start to interact (attractively) when their strain fields start to overlap. Published by AIP Publishing.
机译:使用计算机模拟,我们研究了硬球形朝向立方晶体中点缺陷的扩散,相互作用和应变场。我们表明,随着密度增加,空位扩散随着密度而迅速降低,而间隙扩散表现出较弱的密度依赖性。此外,我们预测与空缺跳跃相关的自由能屏障,并发现自由能屏障的增加高度仅负责空位扩散的减速。此外,我们发现障碍的形状与密度无关。空位之间的相互作用被证明是弱吸引力和短途的,而间隙之间的相互作用被发现强烈吸引力,并且感觉到长距离。因此,我们发现空缺不形成空缺簇,而间面则表现出长期间隙的间隙集群。考虑到职位空缺和间隙的应变领域,我们认为空缺难以彼此感受,因为它们没有大大扰乱晶体,并且如此表现出薄弱的相互作用。另一方面,两只间隙,在长距离相互作用,并且当它们的应变字段开始重叠时,开始互动(吸引)。通过AIP发布发布。

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