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Free- and reference-layer magnetization modes versus in-plane magnetic field in a magnetic tunnel junction with perpendicular magnetic easy axis

机译:具有垂直磁易轴的磁性隧道结中自由层和参考层的磁化模式与平面内磁场的关系

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摘要

We study the magnetodynamic modes of a magnetic tunnel junction with perpendicular magnetic easy axis (p-MTJ) in in-plane magnetic fields using device-level ferromagnetic resonance spectroscopy. We compare our experimental results to those of micromagnetic simulations of the entire p-MTJ. Using an iterative approach to determine the material parameters that best fit our experiment, we find excellent agreement between experiments and simulations in both the static magnetoresistance and magnetodynamics in the free and reference layers. From the micromagnetic simulations, we determine the spatial mode profiles, the localization of the modes and, as a consequence, their distribution in the frequency domain due to the inhomogeneous internal field distribution inside the p-MTJ under different applied field regimes. We also conclude that the excitation mechanism is a combination of the microwave voltage modulated perpendicular magnetic anisotropy, the microwave Oersted field, and the spin-transfer torque generated by the microwave current.
机译:我们使用设备级铁磁共振光谱研究平面磁场中具有垂直磁易轴(p-MTJ)的磁性隧道结的磁动力模式。我们将实验结果与整个p-MTJ的微磁仿真结果进行比较。使用迭代方法确定最适合我们的实验的材料参数,我们发现自由层和参考层的静态磁阻和磁动力学在实验和模拟之间都达到了极好的一致性。从微磁模拟中,我们确定了空间模式轮廓,模式的局域性,并因此确定了由于不同应用场机制下p-MTJ内部内部场分布不均匀而导致的频域分布。我们还得出结论,激励机制是微波电压调制的垂直磁各向异性,微波奥斯特场和微波电流产生的自旋转移转矩的组合。

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