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Interlayer exchange coupling between FeCo and Co ultrathin films through Rh(001) spacers

机译:FeCo和Co超薄膜之间通过Rh(001)隔层进行层间交换耦合

摘要

Using spin density functional theory (SDFT) calculations, we have studied the magnetic states, including collinear and noncollinear magnetic interlayer coupling, of Fe1−xCox ultrathin films sandwiching Rh(001) layers. We found very large values for the interlayer exchange coupling (IEC) in Co/Rhn/Co or (FeCo)m/Rhn/Co structures as compared to, e.g., Ag or Au spacer layers. The IEC oscillates with the Rh spacer thickness showing a transition between strong antiferromagnetic and ferromagnetic coupling between five- and seven-layer thickness of the Rh film. Moreover, depending on the thickness of the FeCo film, a reorientation transition between in-plane and out-of-plane easy axis was found when spin-orbit coupling is considered in the calculations. This result suggests that, for specific arrangements such as (FeCo)2/Rh5/Co structures, a competition between IEC and magnetic anisotropy of coupled films may result in noncollinear ordering. This possibility was studied with constrained, noncollinear SDFT calculations and the results were mapped onto a classical spin model to explore the richness of spin structures that can arise in these multilayer systems.
机译:使用自旋密度泛函理论(SDFT)计算,我们研究了夹有Rh(001)层的Fe1-xCox超薄膜的磁态,包括共线和非共线磁性层间耦合。与例如Ag或Au间隔层相比,我们发现Co / Rhn / Co或(FeCo)m / Rhn / Co结构中的层间交换耦合(IEC)非常大的值。 IEC会以Rh间隔层的厚度振荡,这表明Rh膜的五层和七层厚度在强反铁磁耦合和铁磁耦合之间过渡。而且,根据FeCo膜的厚度,当在计算中考虑自旋-轨道耦合时,发现了在平面内和平面外易轴之间的重新取向转变。该结果表明,对于诸如(FeCo)2 / Rh5 / Co结构的特定排列,IEC和耦合膜的磁各向异性之间的竞争可能导致非共线排列。通过约束非共线SDFT计算研究了这种可能性,并将结果映射到经典自旋模型上,以探索这些多层系统中可能出现的自旋结构的丰富性。

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