首页> 外文会议>Seeheim Conference on Magnetism(SCM2004); 20040627-0701; Seeheim(DE) >On the role of the soft layer in exchange-spring hard/soft magnetic bilayers
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On the role of the soft layer in exchange-spring hard/soft magnetic bilayers

机译:关于软层在交换弹簧硬/软磁双层中的作用

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Bilayers of SmCo/NiFe and SmCo/Co with well-defined in-plane uniaxial anisotropy were grown by dc magnetron sputtering on glass substrates. The magnetization reversal process was investigated by magneto-optic Kerr effect from both sides of the samples, obtaining the hard and soft response separately. The NiFe layers turn out to be exchange coupled to the SmCo films and, for soft layer thicknesses above 30 nm, display reversible demagnetization loops expected from exchange-spring magnets. The experimental NiFe magnetization curve is in good agreement with the theoretical curve obtained by minimizing the magnetic energy in the soft film for an ideal hard/soft bilayer. The soft layer critical thickness above which the exchange spring behavior sets up and its presumed independence on soft layer characteristics are discussed, by comparing the two systems under investigation. We find that SmCo/Co does not fulfil the predictions of the currently accepted theories and that the magnetization reversal of the bilayer is dominated by the Co layer.
机译:通过直流磁控溅射在玻璃基板上生长具有明确的面内单轴各向异性的SmCo / NiFe和SmCo / Co双层。通过磁光克尔效应从样品的两侧研究磁化反转过程,分别获得了硬响应和软响应。事实证明,NiFe层是交换耦合到SmCo膜的,并且对于厚度大于30 nm的软层,显示出交换弹簧磁体预期的可逆退磁回路。 NiFe的实验磁化曲线与理论曲线非常吻合,该理论曲线是通过使理想硬/软双层软膜中的磁能最小化而获得的。通过比较所研究的两个系统,讨论了软层的临界厚度,在该厚度以上可以设定交换弹簧的性能,并假定其对软层特性的独立性。我们发现SmCo / Co不能满足当前公认理论的预测,并且双层的磁化反转主要由Co层主导。

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