The effect of easy axis deviations on the magnetic property of Co nanowire.

Y. Peng, M. Yue, H. Li, Y. Li, C. Li, H. Xu, Q. Wu
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Abstract

The 3d transition metals such as iron, cobalt, and their alloys bear high saturation magnetization $(M_{s})$ and high Curie temperatures $(T_{C})$, which are necessary for the giant energy product and good thermal stability, respectively. For the nanowire of 3d transition metals, such as Co nanowires, the effective anisotropy field can be as much as 16.5 kOe by combining the shape anisotropy and magnetocrystalline anisotropy. However, such high coercivity has never been achieved, because there are much defects and the easy axis deviation from the length direction for the nanowires. Therefore, in this study, we investigate the influence of the defects and deviation of easy axis on the coercivity and magnetization reversal process via 3D micromagnetic simulations.
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易轴向偏差对钴纳米线磁性能的影响。
三维过渡金属如铁、钴及其合金具有高饱和磁化强度$(M_{s})$和高居里温度$(T_{C})$,这是获得巨大能量积和良好热稳定性所必需的。对于三维过渡金属纳米线,如钴纳米线,结合形状各向异性和磁晶各向异性,有效各向异性场可达16.5 kOe。然而,由于纳米线存在许多缺陷,并且容易偏离长度方向,因此从未实现过如此高的矫顽力。因此,在本研究中,我们通过三维微磁模拟研究了易轴缺陷和偏差对矫顽力和磁化反转过程的影响。
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