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Magnetic Hysteresis in Nanostructures with Thermally Controlled RKKY Coupling

机译:热控RKKY耦合在纳米结构中的磁滞现象

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摘要

Mechanisms of the recently demonstrated ex-situ thermal control of the indirect exchange coupling in magnetic multilayer are discussed for different designs of the spacer layer. Temperature-induced changes in the hysteresis of magnetization are shown to be associated with different types of competing interlayer exchange interactions. Theoretical analysis indicates that the measured step-like shape and hysteresis of the magnetization loops is due to local in-plane magnetic anisotropy of nano-crystallites within the strongly ferromagnetic films. Comparison of the experiment and theory is used to contrast the mechanisms of the magnetization switching based on the competition of (i) indirect (RKKY) and direct (non-RKKY) interlayer exchange interactions as well as (ii) indirect ferromagnetic and indirect antiferromagnetic (both of RKKY type) interlayer exchange. These results, detailing the rich magnetic phase space of the system, should help enable the practical use of RKKY for thermally switching the magnetization in magnetic multilayers.
机译:针对间隔层的不同设计,讨论了磁性多层中间接交换耦合的最近证明的异位热控制机制。温度引起的磁化滞后变化显示与竞争性层间交换相互作用的不同类型相关。理论分析表明,测得的磁化回路的阶梯状形状和磁滞是由于强铁磁薄膜内的纳米微晶的局部面内磁各向异性。实验和理论的比较用于对比基于(i)间接(RKKY)和直接(非RKKY)层间交换相互作用以及(ii)间接铁磁和间接反铁磁(都是RKKY型)层间交换。这些详细说明了系统丰富的磁相空间的结果将有助于使RKKY实际用于热切换磁性多层中的磁化强度。

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