Hornfeck Wolfgang
Institute of Physics of the Academy of Sciences of the Czech Republic, Na Slovance 2, 182 21 Praha 8, Czech Republic.
Acta Crystallogr A Found Adv. 2018 Nov 1;74(Pt 6):659-672. doi: 10.1107/S2053273318011828. Epub 2018 Oct 4.
NiZr crystallized from an amorphous matrix or solidified from an undercooled melt exhibits a tenfold twinned microstructure, which is explained by an ideal twin model utilizing special geometric properties of the CrB structure type. The model is unique in several ways: (i) it contains no adjustable parameters other than a scaling factor accounting for the smallest interatomic distance; (ii) it features an irrational shift in the translational part of the twin operation; and (iii) it has many traits commonly observed for quasicrystals, connected to the occurrence of decagonal long-range orientational order, making NiZr the first experimental example of the recently introduced concept of {\bb Z}-module twinning. It is shown how these remarkable properties of the tenfold twin's structure model are related to one another and founded in number theory as well as in the mathematical theory of aperiodic order.
从非晶态基体中结晶或从过冷熔体中凝固的NiZr呈现出十次孪晶微观结构,这可以通过利用CrB结构类型特殊几何性质的理想孪晶模型来解释。该模型在几个方面是独特的:(i)除了一个考虑最小原子间距离的比例因子外,它不包含任何可调参数;(ii)它在孪晶操作的平移部分具有无理数位移;(iii)它具有许多准晶体常见的特征,与十边形长程取向有序的出现有关,使NiZr成为最近引入的{\bb Z}-模孪晶概念的第一个实验例子。文中展示了十次孪晶结构模型的这些显著性质是如何相互关联的,以及它们如何在数论和非周期序数学理论中得以确立。