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Driving magnetic domains at the nanoscale by interfacial strain-induced proximity

机译:驾驶在纳米尺度上的磁域界面应变接近

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摘要

We investigate the local nanoscale changes of the magnetic anisotropy of a Ni film subject to an inverse magnetostrictive effect by proximity to a V2O3 layer. Using temperature-dependent photoemission electron microscopy (PEEM) combined with X-ray magnetic circular dichroism (XMCD), direct images of the Ni spin alignment across the first-order structural phase transition (SPT) of V2O3 were obtained. We find an abrupt temperature-driven reorientation of the Ni magnetic domains across the SPT, which is associated with a large increase of the coercive field. Moreover, angular dependent ferromagnetic resonance (FMR) shows a remarkable change in the magnetic anisotropy of the Ni film across the SPT of V2O3. Micromagnetic simulations based on these results are in quantitative agreement with the PEEM data. Direct measurements of the lateral correlation length of the Ni domains from XMCD images show an increase of almost one order of magnitude at the SPT compared to room temperature, as well as a broad spatial distribution of the local transition temperatures, thus corroborating the phase coexistence of Ni anisotropies caused by the V2O3 SPT. We show that the rearrangement of the Ni domains is due to strain induced by the oxide layers' structural domains across the SPT. Our results illustrate the use of alternative hybrid systems to manipulate magnetic domains at the nanoscale, which allows for engineering of coercive fields for novel data storage architectures.
机译:我们研究当地的纳米尺度的变化磁各向异性的倪电影的主题接近一个逆磁致伸缩效应V2O3层。光电发射电子显微镜(PEEM)的总和与x射线磁圆二色性(XMCD),直接的倪旋转图像对齐的一阶结构相变(SPT)V2O3。temperature-driven Ni的重新定位磁域在SPT,与强制的大量增加字段。共振(FMR)显示了一个显著的变化磁各向异性的倪SPT的电影V2O3。结果定量协议PEEM数据。从XMCD相关长度的镍域图像显示增加了几乎一个顺序级的SPT相比的房间温度,以及一个广泛的空间当地分布的过渡温度,因此确凿的阶段倪V2O3引起的各向异性的共存SPT。域是由于应变由氧化引起的层的结构域在SPT。结果说明使用替代混合系统在操纵磁域纳米级,允许工程强制性字段小说数据存储架构。

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