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Fermi states and anisotropy of Brillouin zone scattering in the decagonal Al–Ni–Co quasicrystal

机译:十边形Al-Ni-Co准晶体中的费米态和布里渊区散射的各向异性

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摘要

Quasicrystals (QCs) are intermetallic alloys that have excellent long-range order but lack translational symmetry in at least one dimension. The valence band electronic structure near the Fermi energy EF in such materials is of special interest since it has a direct relation to their unusual physical properties. However, the Fermi surface (FS) topology as well as the mechanism of QC structure stabilization are still under debate. Here we report the first observation of the three-dimensional FS and valence band dispersions near EF in decagonal Al70Ni20Co10 (d-AlNiCo) QCs using soft X-ray angle-resolved photoemission spectroscopy. We show that the FS, formed by dispersive Al sp-states, has a multicomponent character due to a large contribution from high-order bands. Moreover, we discover that the magnitude of the gap at the FS related to the interaction with Brillouin zone boundary (Hume–Rothery gap) critically differs for the periodic and quasiperiodic directions.
机译:准晶体(QCs)是金属间合金,具有出色的长程有序性,但在至少一个维度上缺乏平移对称性。在这种材料中,费米能量EF附近的价带电子结构特别受关注,因为它与它们异常的物理特性直接相关。但是,费米表面(FS)拓扑以及QC结构稳定的机制仍在争论中。在这里,我们报告使用软X射线角度分辨光发射光谱法对十角形Al70Ni20Co10(d-AlNiCo)QC中的EF附近的三维FS和价带色散进行的首次观察。我们表明,由于高阶谱带的巨大贡献,由色散Al sp状态形成的FS具有多组分特征。此外,我们发现,与周期和准周期方向上,与布里渊区边界相互作用的休斯区间隙的大小(休ume-罗西间隙)有很大不同。

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