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Local control of magnetic damping in ferromagnetic/non-magnetic bilayers by interfacial intermixing induced by focused ion-beam irradiation.

机译:通过聚焦离子束辐照引起的界面混合来局部控制铁磁/非磁双层中的磁阻尼。

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摘要

The influence of interfacial intermixing on the picosecond magnetization dynamics of ferromagnetic/non-magnetic thin-film bilayers was studied. Low-dose focused-ion-beam irradiation was used to induce intermixing across the interface between a 10 nm Ni 81Fe19 layer and a 2–3 nm capping layer of either Au or Cr. Time-resolved magneto-optical Kerr effect was used to study magnetization dynamics as a function of ion-beam dose. With an Au cap, the damping of the un-irradiated bilayer was comparable with native Ni 81Fe19 and increased with increasing ion dose. In contrast, for Ni 81Fe19/Cr the damping was higher than that for native Ni 81Fe19, but the damping decreased with increasing dose.
机译:研究了界面混合对铁磁/非磁薄膜双层皮秒磁化动力学的影响。低剂量聚焦离子束辐照用于在10 nm Ni 81Fe19层和2-3 nm Au或Cr覆盖层之间的界面上引起混合。时间分辨的磁光克尔效应用于研究磁化动力学随离子束剂量的变化。使用Au帽,未辐照双层的阻尼与天然Ni 81Fe19相当,并且随着离子剂量的增加而增加。相反,对于Ni 81Fe19 / Cr,阻尼比天然Ni 81Fe19高,但是阻尼随着剂量的增加而降低。

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