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Static and Dynamic Analysis of Magnetic Tunnel Junctions With Wedged MgO Barrier

机译:带楔状MgO阻挡层的磁性隧道结的静态和动态分析

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This paper deals with the experimental characterization of CoFeB-based magnetic tunnel junctions with wedged MgO barrier. We perform both static hysteresis loop measurements by means of an alternating gradient force magnetometer and magnetization dynamics analysis via vector network analyzer ferromagnetic resonance spectroscopy in a wide field range. The results, supported by theoretical models based on coherent rotation assumption, put in evidence the role of the tunnel barrier thickness on the exchange coupling between free and reference layers. In presence of strong ferromagnetic interaction, the easy-axis hysteresis loop does not exhibit the typical low-field plateau associated with antiparallel alignment, indicating a simultaneous reversal of the two layers. Moreover, a stronger asymmetry is observed in the ferromagnetic resonance spectrum map at low bias fields.
机译:本文研究了楔形MgO势垒的基于CoFeB的磁性隧道结的实验表征。我们通过交变梯度力磁力计进行静态磁滞回线测量,并通过矢量网络分析仪铁磁共振光谱在宽范围内进行磁化动力学分析。结果得到了基于相干旋转假设的理论模型的支持,证明了隧道势垒厚度对自由层和参考层之间交换耦合的作用。在存在强铁磁相互作用的情况下,易轴磁滞回线不会表现出与反平行对齐相关的典型低场平稳状态,表明两层同时反转。此外,在低偏置场下在铁磁共振频谱图中观察到更强的不对称性。

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