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Crystallographically driven magnetic behaviour of arrays of monocrystalline Co nanowires

机译:单晶钴纳米线阵列的晶体学驱动磁行为

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摘要

Cobalt nanowires, 40 nm in diameter and several micrometers long, have been grown by controlled electrodeposition into ordered anodic alumina templates. The hcp crystal symmetry is tuned by a suitable choice of the electrolyte pH (between 3.5 and 6.0) during growth. Systematic high resolution transmission electron microscopy imaging and analysis of the electron diffraction patterns reveals a dependence of crystal orientation from electrolyte pH. The tailored modification of the crystalline signature results in the reorientation of the magnetocrystalline anisotropy and increasing experimental coercivity and squareness with decreasing polar angle of the 'c' growth axis. Micromagnetic modeling of the demagnetization process and its angular dependence is in agreement with the experiment and allows us to establish the change in the character of the magnetization reversal: from quasi-curling to vortex domain wall propagation modes when the crystal 'c' axis tilts more than 75 degrees in respect to the nanowire axis.
机译:直径40 nm,长几微米的钴纳米线已经通过控制电沉积生长成有序的阳极氧化铝模板。的HCP晶体对称性由生长中的电解质的pH的适当选择(3.5和6.0之间)调整。系统的高分辨率透射电子显微镜成像和电子衍射图的分析揭示了晶体取向与电解质pH的关系。定制的晶体签名修饰会导致磁晶各向异性的重新定向,并随着“ c”生长轴的极角减小而增加实验矫顽力和矩形度。退磁过程的微磁模型及其与角度的关系与实验相符,这使我们能够确定磁化反转特性的变化:当晶体“ c”轴倾斜更多时,从准卷曲到涡旋畴壁传播模式相对于纳米线轴小于75度。

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