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基于稀土和镉的二进制磁性二十面体准晶家族。

A family of binary magnetic icosahedral quasicrystals based on rare earths and cadmium.

机构信息

Ames Laboratory, US DOE, Iowa State University, Ames, Iowa 50011, USA.

出版信息

Nat Mater. 2013 Aug;12(8):714-8. doi: 10.1038/nmat3672. Epub 2013 Jun 9.

Abstract

Examples of stable binary icosahedral quasicrystals are relatively rare, and at present there are no known examples featuring localized magnetic moments. These would represent an ideal model system for attaining a deeper understanding of the nature of magnetic interactions in aperiodic lattices. Here we report the discovery of a family of at least seven rare earth icosahedral binary quasicrystals, i-R-Cd (R  =  Gd to Tm, Y), six of which bear localized magnetic moments. Our work highlights the importance of carefully motivated searches through phase space and supports the proposal that, like icosahedral Sc12Zn88 (ref. ), binary quasicrystalline phases may well exist nearby known crystalline approximants, perhaps as peritectically forming compounds with very limited liquidus surfaces, offering very limited ranges of composition/temperature for primary solidification.

摘要

稳定的二进制准晶的例子相对较少,目前还没有已知的具有局域磁矩的例子。这些将是一个理想的模型系统,可更深入地了解非周期性晶格中磁相互作用的性质。在这里,我们报告了至少七种稀土元素的二进制准晶家族的发现,i-R-Cd(R=Gd 到 Tm,Y),其中六个具有局域磁矩。我们的工作强调了通过相空间进行精心设计的搜索的重要性,并支持这样的观点,即像二十面体 Sc12Zn88(参考文献)一样,二进制准晶相可能非常接近已知的晶体近晶相,可能作为具有非常有限的液相面的包晶形成化合物,在原始凝固过程中提供非常有限的组成/温度范围。

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