Large Negative Magnetic Anisotropy of W/Fe/W (001) Epitaxial Trilayers

Large Negative Magnetic Anisotropy of W/Fe/W (001) Epitaxial Trilayers
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W/Fe/W (001) 外延三层膜的大负磁各向异性

DOI:
10.1109/tmag.2015.2432074
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发表时间:
2015
影响因子:
2.1
通讯作者:
N. Kawamura
N. Kawamura
中科院分区:
工程技术4区
文献类型:
--
作者:
Y. Matsumoto;S. Okamoto;N. Kikuchi;O. Kitakami;Y. Miura;M. Suzuki;M. Mizumaki;N. Kawamura

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本文报道了W/Fe/W(001)外延三层膜具有很大的负单轴磁各向异性Ku。Ku的大小随着Fe层厚度的减小而增大,对于0.5 nm的Fe层厚度,Ku随温度的变化范围从300K的-2.1×107erg/cc到10K的-3.5×107erg/cc。较大的负Ku是由于W/Fe界面的界面磁各向异性所致,并可用第一性原理计算定量地再现。室温X射线磁性圆二色谱测量表明,界面W原子的极化方向与Fe的磁矩成反比。在低温下,界面W的感应磁矩几乎是第一原理计算和前人实验结果的一半。这种小的感生W矩可以归因于负Ku的显著温度依赖性。
In this paper, we report that W/Fe/W (001) epitaxial trilayer films exhibit very large negative uniaxial magnetic anisotropy Ku. The magnitude of Ku increases with decreasing the Fe layer thickness and also exhibits significant temperature dependence varying from -2.1 × 107 erg/cc at 300 K to -3.5 × 107 erg/cc at 10 K for the Fe layer thickness of 0.5 nm. The large negative Ku is attributable to interface magnetic anisotropy in nature at the W/Fe interface and can be quantitatively reproduced by the firstprinciples calculation. The X-ray magnetic circular dichroism measurement at room temperature has revealed that the interfacial W atom is polarized in antiparallel with the magnetic moment of Fe. The induced magnetic moment of the interfacial W is almost the half of the values obtained by the first-principles calculation and the previous experiment at low temperature. This small induced W moment may be ascribed to the significant temperature dependence of the negative Ku.
DOI: 10.1063/1.2177126
发表时间: 2006-04-15
影响因子: 3.2
作者:
Hashimoto, Atsushi;Saito, Shin;Takahashi, Migaku
通讯作者: Takahashi, Migaku