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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Magnetoelastic Anisotropy Induced Effects on Field and Temperature Dependent Magnetization Reversal of Ni Nanowires and Nanotubes
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Magnetoelastic Anisotropy Induced Effects on Field and Temperature Dependent Magnetization Reversal of Ni Nanowires and Nanotubes

机译:磁弹性各向异性对镍纳米线和纳米管的场和温度依赖性磁化反转的影响

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摘要

Vertically aligned Ni nanowires and nanotubes have been electrodeposited in alumina templates at room temperature. The detailed study of angular dependent coercivity and squareness demonstrates that the magnetic easy axis of Ni nanowires is perpendicular to that of Ni nanotubes axis. The mechanisms of magnetization reversal in Ni nanowires and Ni nanotubes are found to occur through the nucleation mode with the propagation of transverse domain wall and curling mode, respectively. Field dependant magnetization results at different temperatures have depicted that the magnetocrystalline anisotropy might cause a crossover of easy axis at room temperature to that of low temperature in both Ni nanowires and nanotubes. Furthermore, the variation in temperature dependent coercivity illustrates that the magnetoelastic anisotropy induced by the alumina matrix plays a dominant role in the magnetization reversal of the nanowires and nanotubes at low temperature.
机译:垂直排列的镍纳米线和纳米管已在室温下电沉积在氧化铝模板中。角度相关矫顽力和矩形度的详细研究表明,Ni纳米线的易磁化轴与Ni纳米管的磁化轴垂直。发现Ni纳米线和Ni纳米管中的磁化反转机理分别通过成核模式与横向畴壁的传播和卷曲模式而发生。在不同温度下与磁场有关的磁化结果表明,在Ni纳米线和纳米管中,磁晶各向异性可能会导致室温下易轴与低温的轴交叉。此外,随温度变化的矫顽力的变化说明,氧化铝基体引起的磁弹性各向异性在低温下对纳米线和纳米管的磁化反转起主要作用。

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