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逐原子匹配晶体结构。

Matching crystal structures atom-to-atom.

作者信息

Therrien Félix, Graf Peter, Stevanović Vladan

机构信息

Colorado School of Mines, Golden, Colorado 80401, USA.

National Renewable Energy Laboratory, Golden, Colorado 80401, USA.

出版信息

J Chem Phys. 2020 Feb 21;152(7):074106. doi: 10.1063/1.5131527.

Abstract

Finding an optimal match between two different crystal structures underpins many important materials science problems, including describing solid-solid phase transitions and developing models for interface and grain boundary structures. In this work, we formulate the matching of crystals as an optimization problem where the goal is to find the alignment and the atom-to-atom map that minimize a given cost function such as the Euclidean distance between the atoms. We construct an algorithm that directly solves this problem for large finite portions of the crystals and retrieves the periodicity of the match subsequently. We demonstrate its capacity to describe transformation pathways between known polymorphs and to reproduce experimentally realized structures of semi-coherent interfaces. Additionally, from our findings, we define a rigorous metric for measuring distances between crystal structures that can be used to properly quantify their geometric (Euclidean) closeness.

摘要

找到两种不同晶体结构之间的最佳匹配是许多重要材料科学问题的基础,包括描述固-固相变以及开发界面和晶界结构模型。在这项工作中,我们将晶体匹配问题表述为一个优化问题,其目标是找到使给定成本函数(如原子间欧几里得距离)最小化的对齐方式和原子对原子映射。我们构建了一种算法,该算法可直接针对晶体的大型有限部分解决此问题,并随后恢复匹配的周期性。我们展示了它描述已知多晶型物之间转变途径以及再现半共格界面实验实现结构的能力。此外,根据我们的研究结果,我们定义了一种用于测量晶体结构之间距离的严格度量,可用于适当地量化它们的几何(欧几里得)接近程度。

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