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The domain formation in Fe/Ni/Fe nanoscale magnetic antidot arrays

机译:Fe / Ni / Fe纳米级磁性解毒剂阵列中的畴形成

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摘要

In this paper we report the superconducting quantum interference device (SQUID) and magnetic force microscope (MFM) measurements of magnetic multilayer nanoscale antidot samples. The systems used consist of Fe(60 Å)/Ni(90 Å)/Fe(60 Å) (FeNiFe) multilayer antidots with hexagonal lattice fabricated on nanochannel glass (NCG) substrates with antidot diameters of 260, 362, 530, and 800 nm. The results indicate that the domain structure is commensurate with the holes due to the pinning effect of the antidots. This pinning effect is inversely proportional to the diameter of the antidots. The field dependent MFM data show that the hexagonal antidot lattice induces a weak anisotropy with the magnetic easy axis along the nearest neighbor direction. The unit cell in the antidot arrays could be used for data storage.
机译:在本文中,我们报告了磁性多层纳米级解毒剂样品的超导量子干涉仪(SQUID)和磁力显微镜(MFM)测量。所使用的系统由在六角形点阵直径分别为260、362、530和800的纳米通道玻璃(NCG)基板上制造的六角形晶格的Fe(60Å/ Ni(90Å)/ Fe(60Å)(FeNiFe)多层解毒剂组成纳米结果表明,由于解毒剂的钉扎效应,畴结构与孔相对应。这种钉扎效果与解毒剂的直径成反比。依赖于磁场的MFM数据表明,六角形的点状点阵沿磁易轴沿着最近的相邻方向感应出弱的各向异性。 Antidot阵列中的单位单元可用于数据存储。

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