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Magnetic Properties of Co/CoO Core–Shell Nanowires: Roles of Antiferromagnetic Grain Size Distribution and Interfacial Spin Glass

机译:Co / CoO核壳纳米线的磁性:反铁磁性晶粒尺寸分布和界面自旋玻璃的作用

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摘要

Exchange bias (EB) effect in aligned Co/CoO core-shell nanowires with high aspect ratio was studied. Large EB fields of about 2.2 and 1 kOe in easy axis and hard axis, respectively, were obtained after field cooling. We demonstrate that both antiferromagnetic (AFM) grains and the interfacial spin glass make strong contribution to the observed EB, which is demonstrated with both the cooling field dependence of the EB field and the training effect at different temperatures. The difference in the thermal activation temperature for these two magnetic states leads to a bimodal distribution of the blocking temperature which, in combination with the interplay between the fluctuating spin-ordered AFM grains and the demagnetizing field of Co core, is likely to explain the anomalous drop of coercivity at the temperature in range from 200 to 110 K.
机译:研究了具有高长宽比的取向Co / CoO核壳纳米线中的交换偏压(EB)效应。磁场冷却后,分别在易轴和硬轴上分别获得了约2.2和1 kOe的大EB场。我们证明,反铁磁(AFM)晶粒和界面自旋玻璃都对观察到的EB做出了重要贡献,这由EB场的冷却场依赖性和在不同温度下的训练效果来证明。这两种磁性态的热活化温度不同会导致阻断温度的双峰分布,再加上波动的自旋有序AFM晶粒和Co磁芯的退磁场之间的相互作用,很可能可以解释这种异常现象。温度在200至110 K范围内时矫顽力下降。

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