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Phases growth and stability of quasicrystals

Stability of the decagonal quasicrystal in the Lennard–Jones–Gauss system

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Pages 1959-1965 | Received 27 Sep 2007, Accepted 15 Apr 2008, Published online: 08 Oct 2008
 

Abstract

Although quasicrystals have been studied for 25 years, there are many open questions concerning their stability: What is the role of phason fluctuations? Do quasicrystals transform into periodic crystals at low temperature? If yes, by what mechanisms? We address these questions here for a simple two-dimensional model system, a monatomic decagonal quasicrystal, which is stabilized by the Lennard–Jones–Gauss potential in thermodynamic equilibrium. It is known to transform to the approximant Xi, when cooled below a critical temperature. We show that the decagonal phase is an entropically stabilized random tiling. By determining the average particle energy for a series of approximants, it is found that the approximant Xi is the one with lowest potential energy.

Acknowledgements

Financial support from the Deutsche Forschungsgemeinschaft under contract number TR 154/24-1 is gratefully acknowledged.

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