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Orange peel coupling in multilayers with perpendicular magnetic anisotropy: Application to (Co/Pt)-based exchange-biased spin-valves

机译:具有垂直磁各向异性的多层中的橙皮耦合:在基于(Co / Pt)的交换偏置自旋阀上的应用

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摘要

eel's theory of magnetostatic coupling between two magnetic layers with in-plane magnetization separated by a non-magnetic spacer has been extended to the case of multilayers with perpendicular anisotropy. It is shown that the presence of a correlated roughness between the successive interfaces induces an interlayer coupling through the spacer analogous to the well-known orange peel coupling. However, depending on the parameters describing the interfacial roughness, the magnetic anisotropy and the exchange stiffness constant, this coupling can favor either parallel or an antiparallel alignment of the magnetization in the two ferromagnetic layers. This model was used to quantitatively interpret the variation of interlayer coupling vs. thickness of Pt spacer layer in out-of-plane magnetized exchange-biased spin-valves comprising (Pt/Co) multilayers as free and pinned layers. It is shown that the net coupling can be interpreted by the coexistence of perpendicular orange peel and oscillatory RKKY couplings. Interestingly, since these two couplings have different thickness dependence, in certain range of Pt thickness, the coupling changes sign during growth, being antiferromagnetic at the early stage of the growth of the top (Co/Pt) multilayer but ferromagnetic once the growth is completed. [References: 14]
机译:eel的两个磁性层之间的静磁耦合理论(其平面内磁化被非磁性间隔物隔开)已扩展到具有垂直各向异性的多层的情况。结果表明,相继的界面之间存在相关的粗糙度,这导致通过间隔层的层间耦合类似于众所周知的橙皮耦合。但是,取决于描述界面粗糙度,磁各向异性和交换刚度常数的参数,这种耦合可以有利于两个铁磁层中磁化的平行或反平行排列。该模型用于定量解释在包含(Pt / Co)多层的平面外磁化交换偏置自旋阀中,层间耦合对Pt隔离层厚度的变化,该层为自由层和固定层。结果表明,净耦合可以由垂直的橘皮和振荡的RKKY耦合并存来解释。有趣的是,由于这两种耦合具有不同的厚度依赖性,因此在一定的Pt厚度范围内,耦合会在生长过程中改变符号,在顶部(Co / Pt)多层膜生长的早期阶段是反铁磁性的,但在完成生长后是铁磁性的。 [参考:14]

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