Euchner H, Yamada T, Rols S, Ishimasa T, Ollivier J, Schober H, Mihalkovic M, de Boissieu M
J Phys Condens Matter. 2014 Feb 5;26(5):055402. doi: 10.1088/0953-8984/26/5/055402.
A comparison of periodic approximants and their quasicrystalline counterparts offers the opportunity to better understand the structure, physical properties and stabilizing mechanisms of these complex phases. We present a combined experimental and computational study of the lattice dynamics of the icosahedral quasicrystals i-ZnMgSc and i-ZnAgSc and compare these to the lattice dynamics of the cubic 1/1-approximant Zn6Sc. The two phases, quasicrystal and approximant, are built up from the same atomic clusters, which are packed either quasiperiodically or on a body centered cubic lattice, respectively. Using inelastic neutron scattering and atomic scale simulations, we show that the vibrational spectra of these three systems are very similar, however, they contain a clear signature of the increasing structural complexity from approximant to quasicrystal.
对周期近似物及其准晶对应物进行比较,为更好地理解这些复杂相的结构、物理性质和稳定机制提供了契机。我们对二十面体准晶i-ZnMgSc和i-ZnAgSc的晶格动力学进行了实验与计算相结合的研究,并将其与立方1/1近似物Zn6Sc的晶格动力学进行比较。准晶和近似物这两个相由相同的原子团簇构成,这些原子团簇分别以准周期方式堆积或堆积在体心立方晶格上。利用非弹性中子散射和原子尺度模拟,我们表明这三个体系的振动光谱非常相似,然而,它们包含了从近似物到准晶结构复杂性增加的明显特征。