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硬球晶体及晶体-流体界面的描述:密度泛函方法与相场晶体模型的比较

Description of hard-sphere crystals and crystal-fluid interfaces: a comparison between density functional approaches and a phase-field crystal model.

作者信息

Oettel M, Dorosz S, Berghoff M, Nestler B, Schilling T

机构信息

Johannes Gutenberg-Universität Mainz, Institut für Physik, WA 331, D-55099 Mainz, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Aug;86(2 Pt 1):021404. doi: 10.1103/PhysRevE.86.021404. Epub 2012 Aug 22.

Abstract

In materials science the phase-field crystal approach has become popular to model crystallization processes. Phase-field crystal models are in essence Landau-Ginzburg-type models, which should be derivable from the underlying microscopic description of the system in question. We present a study on classical density functional theory in three stages of approximation leading to a specific phase-field crystal model, and we discuss the limits of applicability of the models that result from these approximations. As a test system we have chosen the three-dimensional suspension of monodisperse hard spheres. The levels of density functional theory that we discuss are fundamental measure theory, a second-order Taylor expansion thereof, and a minimal phase-field crystal model. We have computed coexistence densities, vacancy concentrations in the crystalline phase, interfacial tensions, and interfacial order parameter profiles, and we compare these quantities to simulation results. We also suggest a procedure to fit the free parameters of the phase-field crystal model. Thereby it turns out that the order parameter of the phase-field crystal model is more consistent with a smeared density field (shifted and rescaled) than with the shifted and rescaled density itself. In brief, we conclude that fundamental measure theory is very accurate and can serve as a benchmark for the other theories. Taylor expansion strongly affects free energies, surface tensions, and vacancy concentrations. Furthermore it is phenomenologically misleading to interpret the phase-field crystal model as stemming directly from Taylor-expanded density functional theory.

摘要

在材料科学中,相场晶体方法已广泛应用于模拟结晶过程。相场晶体模型本质上是朗道 - 金兹堡型模型,理应能从相关系统的微观描述推导得出。我们分三个近似阶段对经典密度泛函理论进行了研究,最终得到一个特定的相场晶体模型,并讨论了这些近似所导致的模型适用范围。作为测试系统,我们选择了单分散硬球的三维悬浮体系。我们所讨论的密度泛函理论层次包括基本度量理论、其二阶泰勒展开式以及一个最小相场晶体模型。我们计算了共存密度、晶相中的空位浓度、界面张力和界面序参量分布,并将这些量与模拟结果进行了比较。我们还提出了一种拟合相场晶体模型自由参数的方法。结果表明,相场晶体模型的序参量与经过平移和重新缩放的模糊密度场更为一致,而非与平移和重新缩放后的密度本身一致。简而言之,我们得出结论,基本度量理论非常精确,可作为其他理论的基准。泰勒展开式对自由能、表面张力和空位浓度有很大影响。此外,从现象学角度来看,将相场晶体模型直接解释为源于泰勒展开的密度泛函理论是具有误导性的。

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