Total-energy-based prediction of a quasicrystal structure
Condensed Matter
2016-08-16 v3
Abstract
Quasicrystals are metal alloys whose noncrystallographic symmetry and lack of structural periodicity challenge methods of experimental structure determination. Here we employ quantum-based total-energy calculations to predict the structure of a decagonal quasicrystal from first principles considerations. We employ Monte Carlo simulations, taking as input the knowledge that a decagonal phase occurs in Al-Ni-Co near a given composition, and using a few features of the experimental Patterson function. The resulting structure obeys a nearly deterministic decoration of tiles on a hierarchy of length scales related by powers of , the golden mean.
Keywords
Cite
@article{arxiv.cond-mat/0102085,
title = {Total-energy-based prediction of a quasicrystal structure},
author = {M. Mihalkovič and I. Al-Lehyani and E. Cockayne and C. L. Henley and N. Moghadam and J. A. Moriarty and Y. Wang and M. Widom},
journal= {arXiv preprint arXiv:cond-mat/0102085},
year = {2016}
}
Comments
9 pages, 3 figures