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Spin pumping in magnetic trilayer structures with an MgO barrier

机译:在具有mgO阻挡层的磁性三层结构中自旋泵浦

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摘要

We present a study of the interaction mechanisms in magnetic trilayer structures with an MgO barrier grown by molecular beam epitaxy. The interlayer exchange coupling, A ex, is determined using SQUID magnetometry and ferromagnetic resonance (FMR), displaying an unexpected oscillatory behaviour as the thickness, t MgO, is increased from 1 to 4 nm. Transmission electron microscopy confirms the continuity and quality of the tunnelling barrier, eliminating the prospect of exchange arising from direct contact between the two ferromagnetic layers. The Gilbert damping is found to be almost independent of the MgO thickness, suggesting the suppression of spin pumping. The element-specific technique of X-ray detected FMR reveals a small dynamic exchange interaction, acting in concert with the static interaction to induce coupled precession across the multilayer stack. These results highlight the potential of spin pumping and spin transfer torque for device applications in magnetic tunnel junctions relying on commonly used MgO barriers.
机译:我们目前对分子束外延生长的MgO势垒的磁性三层结构中相互作用机制的研究。使用SQUID磁力和铁磁共振(FMR)确定层间交换耦合A ex,随着厚度t MgO从1 nm增加到4 nm,显示出意外的振荡行为。透射电子显微镜证实了隧道势垒的连续性和质量,消除了两个铁磁层之间直接接触引起的交换前景。发现吉尔伯特阻尼几乎与MgO厚度无关,表明抑制了自旋泵浦。 X射线检测的FMR的特定于元素的技术显示出小的动态交换相互作用,与静态相互作用协同作用,从而引起跨多层堆栈的耦合进动。这些结果凸显了依靠常用的MgO势垒在磁性隧道结中的器件应用中自旋泵浦和自旋传递转矩的潜力。

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