English

Crystalline 'Genes' in Metallic Liquids

Computational Physics 2017-10-05 v1 Materials Science

Abstract

The underlying structural order that transcends the liquid, glass and crystalline states is identified using an efficient genetic algorithm (GA). GA identifies the most common energetically favorable packing motif in crystalline structures close to the alloy's Al-10 at.% Sm composition. These motifs are in turn compared to the observed packing motifs in the actual liquid structures using a cluster-alignment method which reveals the average topology. Conventional descriptions of the short-range order, such as Voronoi tessellation, are too rigid in their analysis of the configurational poly-types when describing the chemical and topological ordering during transition from undercooled metallic liquids to crystalline phases or glass. Our approach here brings new insight into describing mesoscopic order-disorder transitions in condensed matter physics.

Keywords

Cite

@article{arxiv.1408.1714,
  title  = {Crystalline 'Genes' in Metallic Liquids},
  author = {Yang Sun and Feng Zhang and Zhuo Ye and Xiaowei Fang and Zejun Ding and Cai-Zhuang Wang and Mikhail I. Mendelev and Ryan T. Ott and M. J. Kramer and Kai-Ming Ho},
  journal= {arXiv preprint arXiv:1408.1714},
  year   = {2017}
}