4.6 Article

Short- and medium-range order in a Zr73Pt27 glass: Experimental and simulation studies

期刊

PHYSICAL REVIEW B
卷 78, 期 18, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.78.184204

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资金

  1. NSF of China [60578046]
  2. Fudan High-End Computing Center. Ames Laboratory
  3. U.S. Department of Energy by Iowa State University [DE-AC02-07CH11358]
  4. Energy Research, Office of Basic Energy Sciences
  5. National Energy Research Supercomputing Center (NERSC) in Berkeley
  6. U.S. Department of Energy [DE-AC02-06CH11357]

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The structure of a Zr73Pt27 metallic glass, which forms a Zr5Pt3 (Mn5Si3-type) phase having local atomic clusters with distorted icosahedral coordination during the primary crystallization, has been investigated by means of x-ray diffraction and combining ab initio molecular-dynamics (MD) and reverse Monte Carlo (RMC) simulations. The ab initio MD simulation provides an accurate description of short-range structural and chemical ordering in the glass. A three-dimensional atomistic model of 18 000 atoms for the glass structure has been generated by the RMC method utilizing both the structure factor S(k) from x-ray diffraction experiment and the partial pair-correlation functions from ab initio MD simulation. Honeycutt and Andersen index and Voronoi cell analyses, respectively, were used to characterize the short- and medium-range order in the atomistic structure models generated by ab initio MD and RMC simulations. The ab initio results show that an icosahedral type of short- range order is predominant in the glass state. Furthermore, analysis of the atomic model from the constrained RMC simulations reveals that the icosahedral-like clusters are packed in arrangements having higher-order correlations, thus establishing medium-range topological order up to two or three cluster shells.

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