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曾长淦. FeGe纳米线中外延应力导致的铁磁性[J]. 物理, 2008, 37(04): 220-222.
引用本文: 曾长淦. FeGe纳米线中外延应力导致的铁磁性[J]. 物理, 2008, 37(04): 220-222.
Epitaxial stabilization of ferromagnetism in FeGe nanowires[J]. PHYSICS, 2008, 37(04): 220-222.
Citation: Epitaxial stabilization of ferromagnetism in FeGe nanowires[J]. PHYSICS, 2008, 37(04): 220-222.

FeGe纳米线中外延应力导致的铁磁性

Epitaxial stabilization of ferromagnetism in FeGe nanowires

  • 摘要: 对在Ge(111)表面沿着<11-0>方向外延生长的单斜FeGe纳米线进行研究,结果发现,虽然块体单斜FeGe相是反铁磁性,其纳米线却在200 K以下表现出强铁磁有序.每个Fe原子的磁矩为0.8 μB.密度泛函计算揭示外延产生的晶格压缩使类派尔斯反铁磁基态失稳,从而稳定实验观察到的铁磁性.

     

    Abstract: Epitaixial monoclinic FeGe nanowires have been grown on Ge(111) along the <11-1> direction. Whereas monoclinic FeGe is antiferromagnetic in the bulk, the nanowires are surprisingly strong ferromagnets below ~200 K, with an average magnetic moment of 0.8 μB per Fe atom. Density functional calculations indicate that the observed ferromagnetism is stabilized by lattice compression, which destabilizes the antiferromagnetic Peierls-like ground state.

     

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