论文标题

贝叶斯对二元合金的原子间电位的校准

Bayesian calibration of interatomic potentials for binary alloys

论文作者

Hegde, Arun, Weiss, Elan, Windl, Wolfgang, Najm, Habib N., Safta, Cosmin

论文摘要

开发具有量化预测准确性的可靠间潜在模型对于原子模拟至关重要。常用的电位,例如通过嵌入原子方法(EAM)构建的电位,源自半经验考虑,并包含必须根据训练数据拟合的未知参数。在目前的工作中,我们研究了贝叶斯校准,以作为拟合二元合金电位的一种手段。贝叶斯环境自然地吸收了关于不确定数量的概率主张。这样,可以通过对训练数据进行调节,然后贯穿预测来更新有关模型参数和模型错误的不确定性。我们应用这些技术来研究一个金属系统家族的EAM潜力,其中训练数据对应于晶格参数,混合焓和各种弹性常数的密度功能理论值。通过使用预测分布,我们证明了潜力的局限性,并突出了统计公式对于模型误差的重要性。

Developing reliable interatomic potential models with quantified predictive accuracy is crucial for atomistic simulations. Commonly used potentials, such as those constructed through the embedded atom method (EAM), are derived from semi-empirical considerations and contain unknown parameters that must be fitted based on training data. In the present work, we investigate Bayesian calibration as a means of fitting EAM potentials for binary alloys. The Bayesian setting naturally assimilates probabilistic assertions about uncertain quantities. In this way, uncertainties about model parameters and model errors can be updated by conditioning on the training data and then carried through to prediction. We apply these techniques to investigate an EAM potential for a family of gold-copper systems in which the training data correspond to density-functional theory values for lattice parameters, mixing enthalpies, and various elastic constants. Through the use of predictive distributions, we demonstrate the limitations of the potential and highlight the importance of statistical formulations for model error.

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