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Diffusion and interactions of interstitials in hard-sphere interstitial solid solutions

机译:间隙在硬球间质固体解决方案中的分散和相互作用

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Using computer simulations, we study the dynamics and interactions of interstitial particles in hard-sphere interstitial solid solutions. We calculate the free-energy barriers associated with their diffusion for a range of size ratios and densities. By applying classical transition state theory to these free-energy barriers, we predict the diffusion coefficients, which we find to be in good agreement with diffusion coefficients as measured using event-driven molecular dynamics simulations. These results highlight that transition state theory can capture the interstitial dynamics in the hard-sphere model system. Additionally, we quantify the interactions between the interstitials. We find that, apart from excluded volume interactions, the interstitial-interstitial interactions are almost ideal in our system. Lastly, we show that the interstitial diffusivity can be inferred from the large-particle fluctuations alone, thus providing an empirical relationship between the large-particle fluctuations and the interstitial diffusivity. Published by AIP Publishing.
机译:使用计算机模拟,我们研究了坚硬球体间质固体解决方案中的间质粒子的动态和相互作用。我们计算与其扩散相关的自由能屏障,这为一系列尺寸比率和密度。通过将经典转变状态理论应用于这些自由能障碍,我们预测扩散系数,我们发现与使用事件驱动的分子动力学模拟测量的扩散系数很好。这些结果突出显示转换状态理论可以捕获硬球模型系统中的间隙动态。此外,我们量化了间隔性之间的相互作用。我们发现,除了被排除的卷互动之外,间隔内互动在我们的系统中几乎是理想的。最后,我们表明可以从单独的大粒子波动从大粒子波动推断出间隙扩散性,从而提供大粒子波动与间隙扩散率之间的经验关系。通过AIP发布发布。

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