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首页> 外文期刊>Journal of Applied Physics >90° magnetic coupling in a NiFe/FeMn/biased NiFe multilayer spin valve component investigated by polarized neutron reflectometry
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90° magnetic coupling in a NiFe/FeMn/biased NiFe multilayer spin valve component investigated by polarized neutron reflectometry

机译:极化中子反射法研究NiFe / FeMn /偏置NiFe多层自旋阀组件中的90°磁耦合

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We have observed 90° magnetic coupling in a NiFe/FeMn/biased NiFe multilayer system using polarized neutron reflectometry. Magnetometry results show magnetic switching for both the biased and free NiFe layers, the latter of which reverses at low applied fields. As these measurements are only capable of providing information about the total magnetization within a sample, polarized neutron reflectometry was used to investigate the reversal behavior of the NiFe layers individually. Both the non-spin-flip and spin-flip neutron reflectometry signals were tracked around the free NiFe layer hysteresis loop and were used to detail the evolution of the magnetization during reversal. At low magnetic fields near the free NiFe coercive field, a large spin-flip signal was observed, indicating magnetization aligned perpendicular to both the applied field and pinned layer.
机译:我们已经使用极化中子反射法在NiFe / FeMn /偏斜NiFe多层系统中观察到90°磁耦合。磁力计结果表明,偏置的和自由的NiFe层均发生磁转换,后者在低外加磁场下会反转。由于这些测量仅能提供有关样品中总磁化强度的信息,因此使用极化中子反射仪分别研究了NiFe层的反转行为。围绕自由NiFe层磁滞回线跟踪了非自旋翻转和自旋翻转中子反射信号,并用于详细说明反转过程中磁化强度的变化。在自由NiFe矫顽场附近的低磁场下,观察到较大的自旋翻转信号,表明磁化强度垂直于外加磁场和固定层。

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