Sato Taku J
Neutron Science Laboratory, Institute for Solid State Physics, University of Tokyo, 106-1 Shirakata, Tokai, Ibaraki 319-1106, Japan.
Acta Crystallogr A. 2005 Jan;61(Pt 1):39-50. doi: 10.1107/S0108767304026625. Epub 2004 Dec 22.
Recent progress in experimental understanding of the A-Mg-R (A=Zn and Mg, R=rare-earth elements) magnetic quasicrystals is reviewed. The A-Mg-R quasicrystals have long been classified as spin-glasses because of their typical spin-freezing behavior at low temperatures. On the other hand, recent neutron diffraction experiments clearly detect strong magnetic diffuse scattering, indicative of significant short-range spin order. After all the data sets obtained by various experimental techniques have been combined, it is proposed that the nature of the spin freezing in magnetic quasicrystals is related to blocking phenomena in superparamagnets rather than to a thermodynamic transition in the canonical spin-glasses.
综述了对A-Mg-R(A=锌和镁,R=稀土元素)磁性准晶体实验理解方面的最新进展。长期以来,A-Mg-R准晶体因其在低温下典型的自旋冻结行为而被归类为自旋玻璃。另一方面,最近的中子衍射实验清楚地检测到强烈的磁漫散射,这表明存在显著的短程自旋序。在综合了通过各种实验技术获得的所有数据集之后,有人提出磁性准晶体中自旋冻结的本质与超顺磁体中的阻塞现象有关,而不是与规范自旋玻璃中的热力学转变有关。