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Magnetization reversal of Co/Pd multilayers on nanoporous templates

机译:纳米多孔模板上Co / Pd多层的磁化反转

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摘要

By making use of an e-beam deposition system, the [Co(2 Å)/Pd(10 Å)]15 multilayers were prepared on a Si(100) substrate and anodized aluminum oxide [AAO] templates with average pore diameters of around 185, 95, and 40 nm. The mechanism of magnetization reversal of the Co/Pd multilayers was investigated. Wall motion was observed on the Co/Pd multilayers grown on the Si substrate. A combination of wall motion and domain rotation was found in the sample grown on the AAO template with a 185-nm pore diameter. For the samples grown on the AAO templates with pore diameters of around 95 and 40 nm, the reversal mechanism was dominated by domain rotation. The rotational reversal was mainly contributed from the underlying nanoporous AAO templates that provided an additional pinning effect.>PACS: 75.30.Gw, magnetic anisotropy; 78.67.Rb, nanoporous materials; 75.60.Jk, magnetization reversal mechanisms.
机译:通过使用电子束沉积系统,在Si(100)基板上制备了[Co(2Å)/ Pd(10Å)] 15多层膜和阳极氧化阳极氧化铝[AAO]模板185、95和40 nm。研究了Co / Pd多层膜的磁化反转机理。在硅衬底上生长的Co / Pd多层膜上观察到壁运动。在壁厚为185 nm的AAO模板上生长的样品中发现了壁运动和畴旋转的组合。对于在孔径约为95和40 nm的AAO模板上生长的样品,反转机理主要由畴旋转决定。 > PACS: 75.30.Gw,磁各向异性;各向异性;旋转反转主要来自底层的纳米多孔AAO模板,该模板提供了额外的固定效果。 78.67.Rb,纳米多孔材料; 75.60.Jk,磁化反转机制。

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