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利用周期性衬底调节模型准晶体及其近似晶体的稳定性。

Tuning the stability of a model quasicrystal and its approximants with a periodic substrate.

作者信息

Varela-Rosales Nydia Roxana, Engel Michael

机构信息

Institute for Multiscale Simulation, Friedrich-Alexander-Universität Erlangen-Nürnberg, 91058 Erlangen, Germany.

出版信息

Soft Matter. 2024 Mar 27;20(13):2915-2925. doi: 10.1039/d4sm00191e.

Abstract

Quasicrystals and their periodic approximants are complex crystalline phases. They have now been observed in many metallic alloys, soft matter systems, and particle simulations. In recent experiments of thin-film perovskites on solid substrates, the type of complex phase was found to change depending on thermodynamic conditions and the type of substrate used. Here, we investigate the effect of a substrate on the relative thermodynamic stability of a two-dimensional model quasicrystal and its approximants. Our simulation model is particles interacting the Lennard-Jones-Gauss potential. Our numerical methods are molecular dynamics simulations and free energy calculations that take into account phason flips explicitly. For substrates interacting weakly with the particles, we observe an incommensurate-commensurate transition, in which a continuous series of quasicrystal approximants locks into a small number of approximants. Interestingly, we observe that the 3/2 approximant exhibits phason mode fluctuations in thermodynamic equilibrium. Such fluctuations are reminiscent of random tiling and a phenomenon usually associated only with quasiperiodic order. For stronger substrates, we find an enhancement of the stability of the dodecagonal quasicrystal and variants of square lattices. We explain all observed phenomena by the interplay of the model system with the substrate. Our results demonstrate that designing novel complex periodic and quasiperiodic structures by choice of suitable substrates is a promising strategy.

摘要

准晶体及其周期近似物是复杂的晶相。现在已在许多金属合金、软物质系统和粒子模拟中观察到它们。在近期关于固体衬底上的薄膜钙钛矿的实验中,发现复杂相的类型会根据热力学条件和所用衬底的类型而变化。在此,我们研究衬底对二维模型准晶体及其近似物相对热力学稳定性的影响。我们的模拟模型是通过 Lennard-Jones-Gauss 势相互作用的粒子。我们的数值方法是明确考虑相子翻转的分子动力学模拟和自由能计算。对于与粒子弱相互作用的衬底,我们观察到一种非公度 - 公度转变,其中一系列连续的准晶体近似物锁定为少数几种近似物。有趣的是,我们观察到 3/2 近似物在热力学平衡中表现出相子模式波动。这种波动让人联想到随机平铺以及通常仅与准周期序相关的一种现象。对于更强相互作用的衬底,我们发现十二边形准晶体和方形晶格变体的稳定性增强。我们通过模型系统与衬底的相互作用来解释所有观察到的现象。我们的结果表明,通过选择合适的衬底来设计新型复杂的周期性和准周期性结构是一种很有前景的策略。

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