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首页> 外文期刊>Journal of the Korean Physical Society >The verwey phase of magnetite-a long-running mystery in magnetism
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The verwey phase of magnetite-a long-running mystery in magnetism

机译:磁铁矿的纯正相-长期存在的磁性之谜

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摘要

Magnetite (Fe3O4) is the original magnetic material and the parent of ferrite magnets, with modern applications ranging from spintronics to MRI contrast agents. At ambient temperatures magnetite has a cubic spinel-type crystal structure, but it undergoes a complex structural distortion and becomes electrically insulating below the 125 K Verwey transition. The electronic ground state of the Verwey phase has been unclear for over 70 years as the low temperature structure was unknown, but the full superstructure was recently determined by high energy microcrystal x-ray diffraction. An analysis of 168 frozen phonon modes in the acentric (and hence multiferroic) low temperature magnetite structure is presented here. Differences between the amplitudes of centric and acentric branches of, X and W modes all contribute to the significant off-center atomic distortions in the low temperature structure.
机译:磁铁矿(Fe3O4)是原始的磁性材料,也是铁氧体磁铁的母体,其现代应用范围包括自旋电子器件到MRI造影剂。在环境温度下,磁铁矿具有立方尖晶石型晶体结构,但会经历复杂的结构变形,并在125 K Verwey转变以下变得电绝缘。 Verwey相的电子基态在70多年来一直不清楚,因为其低温结构尚不清楚,但是最近通过高能微晶X射线衍射确定了整个上层结构。此处介绍了在非中心(因而为多铁性)低温磁铁矿结构中的168个冻结声子模态的分析。 X和W模式的中心分支和非中心分支的振幅之间的差异都导致低温结构中明显偏心的原子畸变。

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