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Effects of Mn corrosion on the magnetic properties of Ni81Fe19/Ir20Mn80 exchange biased thin films

机译:Mn腐蚀对Ni81Fe19 / IR20MN80交换偏置薄膜磁性的影响

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The effects of antiferromagnetic corrosion on the magnetic properties of exchange biased thin films were studied. A Nisub81/subFesub19/sub/Irsub20/subMnsub80/sub bilayer was grown using DC sputtering. The crystal structure, microstructure, and magnetic properties of the samples were examined using x-ray diffraction (XRD), scanning electron microscope along with energy dispersive spectrometer, and resonance-vibrating sample magnetometer, respectively. XRD patterns revealed that the crystalline structure was (111) for both IrMn and NiFe layers. After magnetic field cooling, the room-temperature exchange bias field and coercive field were determined from hysteresis loops and no training effect was observed during the remagnetization process. The magnetic properties of the exchange biased bilayer strongly depended on the level of Mn corrosion in deionized (DI) water. A step-like magnetization curve was observed in the bilayer after soaking in DI water for 10 min. A detailed analysis of the magnetic moment response indicated an increase in the depth and area of corroded Mn with increasing soaking time. Trace amounts of Mnsup2+/sup in DI water, detected by a spectrophotometric technique using 1-(2-pyridylazo)-2-naphthol as an indicator, confirmed increasing Mn corrosion with increasing soaking time.
机译:研究了反铁磁腐蚀对交换偏置薄膜磁性的影响。使用DC溅射生长Ni 81 Fe 19 / Ir 20 Mn 80 双层。使用X射线衍射(XRD),扫描电子显微镜以及能量分散光谱仪和共振振动样品磁力计检查样品的晶体结构,微观结构和磁性。 XRD图案显示,晶体结构是IRMN和NIFE层的(111)。在磁场冷却之后,从滞后环确定室温交换偏置场和矫顽磁场,在重新凝结过程中没有观察到训练效果。交换偏置双层的磁性强烈依赖于去离子(DI)水中的Mn腐蚀水平。在DI水中浸泡10分钟后,在双层中观察到阶梯状磁化曲线。对磁矩响应的详细分析表明腐蚀时间增加的腐蚀MN的深度和面积增加。在DI水中的痕量Mn 2 + 通过使用1-(2-吡啶胺)-2-萘酚作为指示剂的分光光度法检测,证实了随着浸泡时间的增加而增加的Mn腐蚀。

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