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Spin-transfer dynamics in spin valves with out-of-plane magnetized CoNi free layers

机译:具有平面磁化CoNi自由层的旋转阀中的旋转传递动力学

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摘要

We have measured spin-transfer-induced dynamics in magnetic nanocontact devices having a perpendicularly magnetized Co/Ni free layer and an in-plane magnetized CoFe fixed layer. The frequencies and powers of the excitations agree well with the predictions of the single-domain model and indicate that the excited dynamics correspond to precessional orbits with angles ranging from zero to 90° as the applied current is increased at a fixed field. From measurements of the onset current as a function of applied field strength we estimate the magnitude of the spin torque asymmetry parameter ??1.5. By combining these with spin torque ferromagnetic resonance measurements, we also estimate the spin-wave radiation loss in these devices.
机译:我们已经测量了具有垂直磁化的Co / Ni自由层和面内磁化的CoFe固定层的磁性纳米接触装置中的自旋转移诱导动力学。激发的频率和功率与单域模型的预测非常吻合,并表明当施加的电流在固定场上增加时,激发的动力学对应于进动轨道,其角度范围从零到90°。从对作为施加的场强的函数的开始电流的测量中,我们估计自旋转矩不对称参数Δε1.5的大小。通过将它们与自旋扭矩铁磁共振测量相结合,我们还可以估算这些设备中的自旋波辐射损耗。

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