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Field-anneal effects on magnetic and magnetoresistive properties of Fe-Mn, Ir-Mn and NiO spin valves

机译:场退火对Fe-Mn,Ir-Mn和NiO自旋阀的磁和磁阻特性的影响

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摘要

Spin valves with a Co film as a reference layer and with antiferromagnetic Fe-Mn, Ir-Mn and NiO films as pinning layers were deposited in a DC magnetron sputtering system, and annealed in a field parallel, perpendicular or antiparallel to the easy aids of the reference layer. After anneal, their ferromagnetic coupling and unidirectional anisotropy fields, as well as anisotropy and giant magnetoresistance coefficients were characterized at room temperature. Four critical temperatures were determined from variations of these properties with anneal temperatures. These spin valves were evaluated based on these properties and critical temperatures. Approaches to improvements of these spin valves for uses as read sensors were discussed.
机译:将具有Co膜作为参考层且具有反铁磁Fe-Mn,Ir-Mn和NiO膜作为钉扎层的自旋阀沉积在DC磁控溅射系统中,并在平行,垂直或反平行的磁场中进行退火,以方便操作。参考层。退火后,在室温下表征了它们的铁磁耦合和单向各向异性场,以及各向异性和巨大的磁阻系数。根据这些性质随退火温度的变化确定了四个临界温度。基于这些特性和临界温度对这些旋转阀进行了评估。讨论了改进这些自旋阀以用作读取传感器的方法。

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