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The effects of the thickness of magnetically hard- and soft-phase layers on magnetic properties and exchange coupling in multilayer magnets

机译:磁性硬相层和软相层厚度对多层磁体中磁性和交换耦合的影响

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摘要

The structure and magnetic properties of multilayer magnets containing a hard phase [HP≡ (Nd0.95Dy0.05)(Fe,Co,Nb,B) 5.5] and a soft phase (SP≡Fe and Fe65Co35) have been investigated. For the nanocomposite multilayer of Si(substrate)/Ti(30 nm)/[HP(x nm)/SP(y nm)] n/Ti(30 nm), the remanence enhancement has been observed at different thickness and volume fractions of hard- and soft-phase layers. The remanence increases and the coercivity decreases with the addition of soft phase, in comparison with the results of the single-layer film. For the multilayer of Si(substrate)/Ti(30 nm)/[HP(15 nm)/Fe(5 nm)] n/Ti(30 nm) annealed at 575 °C for 30 min, the coercivity of the multilayer reaches a maximum at n=20. Effects of the layer thickness and volume fraction of hard- and soft-phase layers on magnetic properties and exchange coupling in the multilayer films have been observed.
机译:研究了包含硬相[HP≡(Nd0.95Dy0.05)(Fe,Co,Nb,B)5.5]和软相(SP≡Fe和Fe65Co35)的多层磁体的结构和磁性。对于Si(衬底)/ Ti(30 nm)/ [HP(x nm)/ SP(y nm)] n / Ti(30 nm)的纳米复合多层,在不同的厚度和体积分数下观察到剩磁增强硬相和软相层。与单层膜的结果相比,随着添加软相,剩磁增加,矫顽力降低。对于在575°C下退火30分钟的Si(衬底)/ Ti(30 nm)/ [HP(15 nm)/ Fe(5 nm)] n / Ti(30 nm)多层,其矫顽力达到最大值为n = 20。已经观察到硬相和软相层的层厚度和体积分数对多层膜中的磁性和交换耦合的影响。

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