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Uniaxial magnetic anisotropy energy of fe wires embedded in carbon nanotubes

机译:埋在碳纳米管中的Fe线的单轴磁各向异性能

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In this work, we analyze the magnetic anisotropy energy (MAE) of Fe cylinders embedded within zigzag carbon nanotubes, by means of ab initio calculations. To see the influence of the confinement, we fix the Fe cylinder diameter and we follow the changes of the MAE as a function of the diameter of the nanotube, which contains the Fe cylinder. We find that the easy axis changes from parallel to perpendicular, with respect to the cylinder axis. The orientation change depends quite strongly on the confinement, which indicates a nontrivial dependence of the magnetization direction as function of the nanotube diameter. We also find that the MAE is affected by where the Fe cylinder sits with respect to the carbon nanotube, and the coupling between these two structures could also dominate the magnetic response. We analyze the thermal stability of the magnetization orientation of the Fe cylinder close to room temperature.
机译:在这项工作中,我们通过从头算的方法分析了曲折形碳纳米管中嵌入的Fe圆柱的磁各向异性能(MAE)。为了查看限制的影响,我们确定了Fe圆柱体的直径,并随MAE随包含Fe圆柱体的纳米管直径的变化而变化。我们发现,相对于圆柱轴,易轴从平行变为垂直。方向变化在很大程度上取决于限制,这表明磁化方向与纳米管直径的函数具有非平凡的依赖性。我们还发现,MAE受Fe圆柱相对于碳纳米管的位置的影响,并且这两个结构之间的耦合也可以主导磁响应。我们分析了接近室温的Fe圆柱的磁化取向的热稳定性。

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