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Thermal and magnetic stability of unidirectional anisotropy in spin-valve magnetoresistive heads

机译:自旋阀磁阻磁头中单向各向异性的热和磁稳定性

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摘要

The temperature and time dependencies of magnetic anisotropies for NiFe layers pinned by two typical antiferromagnetic films, NiO and FeMn, were studied to understand the stability of unidirectional anisotropy. Torque curves were measured isothermally after application of a magnetic field from a direction perpendicular to the unidirectional anisotropy for certain time periods. Applying the field caused the torque curve to shift toward the field direction and its amplitude to decrease. The amount of shift and the normalized decrease in the torque amplitude were proportional to the logarithmic time of the applied perpendicular field. The changes observed in the NiO/NiFe film are twice as large as those in the NiFe/FeMn film at the same holding time and temperature. The external magnetic field caused rotation in the direction of the unidirectional anisotropy and a reduction in the exchange coupling strength. These changes may be explained by the thermal fluctuation aftereffect model. The unidirectional anisotropy in the NiO/NiFe film was less stable compared with that in the NiFe/FeMn film.
机译:研究了由两个典型的反铁磁薄膜(NiO和FeMn)固定的NiFe层的磁各向异性的温度和时间依赖性,以了解单向各向异性的稳定性。在垂直于单向各向异性的方向施加磁场一定时间后,等温测量扭矩曲线。施加磁场会导致转矩曲线向磁场方向移动,其幅度会减小。偏移量和扭矩振幅的归一化减小与所施加垂直场的对数时间成正比。在相同的保持时间和温度下,在NiO / NiFe膜中观察到的变化是在NiFe / FeMn膜中观察到的变化的两倍。外部磁场导致沿单向各向异性方向旋转,并降低了交换耦合强度。这些变化可以通过热波动后效应模型来解释。与NiFe / FeMn膜相比,NiO / NiFe膜的单向各向异性较不稳定。

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