Zhu Qiang, Samanta Amit, Li Bingxi, Rudd Robert E, Frolov Timofey
Department of Physics and Astronomy, High Pressure Science and Engineering Center, University of Nevada, Las Vegas, NV, 89154, USA.
Lawrence Livermore National Laboratory, Livermore, CA, 94550, USA.
Nat Commun. 2018 Feb 1;9(1):467. doi: 10.1038/s41467-018-02937-2.
The study of grain boundary phase transitions is an emerging field until recently dominated by experiments. The major bottleneck in the exploration of this phenomenon with atomistic modeling has been the lack of a robust computational tool that can predict interface structure. Here we develop a computational tool based on evolutionary algorithms that performs efficient grand-canonical grain boundary structure search and we design a clustering analysis that automatically identifies different grain boundary phases. Its application to a model system of symmetric tilt boundaries in Cu uncovers an unexpected rich polymorphism in the grain boundary structures. We find new ground and metastable states by exploring structures with different atomic densities. Our results demonstrate that the grain boundaries within the entire misorientation range have multiple phases and exhibit structural transitions, suggesting that phase behavior of interfaces is likely a general phenomenon.
晶界相变的研究是一个新兴领域,直到最近一直由实验主导。用原子模型探索这一现象的主要瓶颈在于缺乏一种能够预测界面结构的强大计算工具。在此,我们基于进化算法开发了一种计算工具,该工具可进行高效的巨正则晶界结构搜索,并设计了一种聚类分析方法,能自动识别不同的晶界相。将其应用于铜中对称倾斜晶界的模型系统,揭示了晶界结构中意想不到的丰富多态性。通过探索具有不同原子密度的结构,我们发现了新的基态和亚稳态。我们的结果表明,在整个取向差范围内的晶界具有多个相并表现出结构转变,这表明界面的相行为可能是一种普遍现象。