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The loop-stage dependent exchange bias training effect in FeNi/FeMn bilayer

机译:Feni / Femn Bilayer的循环级依赖交换偏置训练效果

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Recently, the exchange bias (EB) phenomenon in the ferromagnet/antiferromagnet (FM/AFM) bilayer and its inborn instability effect, i .e ., training effect [1], have attracted much attention for its great technological importance in spintronic devices . Usually, the study of training effect is performed by continuously recording the exchange field (H) and the coercivity (H) after measuring an entire magnetic hysteresis (M-H) loop . However, an M-H loop can be divided into four different magnetization stages, i .e . positive saturation stage, descending branch, negative saturation stage, ascending branch, as illustrated by `I', `II', `III' and `IV' in Fig . 1 . Different loop stages may have different contributions to the EB training effect, which has rarely been studied so far . Therefore, in this work, the loop-stage dependent EB training effect has been carefully investigated in the polycrystalline FeNi/FeMn bilayer.
机译:最近,铁磁性/反霉素(FM / AFM)双层的交换偏见(EB)现象及其天生不稳定效应,I。。,培训效果[1],对其在旋转式设备的巨大技术重要性引起了很多关注。通常,通过在测量整个磁滞后(M-H)环之后连续记录交换场(H)和矫顽力(H)来进行训练效果的研究。但是,M-H循环可以分为四个不同的磁化阶段,I ..正饱和阶段,下降分支,负饱和阶段,上升分支,如图2所示的“I”,“II”,“IV”所示。 1。不同的循环阶段可能对EB培训效果产生不同的贡献,这已经很少已经过了研究。因此,在这项工作中,在多晶Feni / Femn双层中仔细研究了环级依赖的EB训练效果。

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