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Nucleation and phase transition of decagonal...
Journal article

Nucleation and phase transition of decagonal quasicrystals

Abstract

In this work, we study the nucleation of quasicrystals from liquid or periodic crystals by developing an efficient order-order phase transition algorithm, namely, the nullspace-preserving saddle search method. In particular, we focus on nucleation and phase transitions of the decagonal quasicrystal (DQC) based on the Lifshitz-Petrich model. We present the nucleation path of DQC from the liquid and demonstrate one- and two-stage transition paths between DQC and periodic crystals. We provide a perspective of the group-subgroup phase transition and nucleation rates to understand the nucleation and phase transition mechanisms involving DQC. These results reveal the one-step and multi-step modes of symmetry breaking or recovery in the phase transition from DQC, where the multi-step modes are more probable.

Authors

Zhou T; Zhang L; Zhang P; Shi A-C; Jiang K

Journal

The Journal of Chemical Physics, Vol. 161, No. 16,

Publisher

AIP Publishing

Publication Date

October 28, 2024

DOI

10.1063/5.0232334

ISSN

0021-9606

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