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Finite size effects on spin-torque driven ferromagnetic resonance in spin valves with a Co/Ni synthetic free layer

机译:有限尺寸对旋转扭矩驱动的铁磁性共振与CO / NI合成自由层的影响

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Spin-torque driven ferromagnetic resonance (ST-FMR) is used to study magnetic excitations in Co/Ni synthetic layers confined in nanojunctions. Field swept ST-FMR measurements were conducted with a magnetic field applied perpendicular to the layer surface. The resonance lines were measured under low amplitude excitation in a linear response regime. The resulting resonance fields were compared with those obtained using conventional rf field driven FMR on extended films with the same Co/Ni layer structure. A lower resonance field is found in confined structures. The effect of both dipolar fields acting on the Co/Ni layer emanating from other magnetic layers in the device and finite size effects on the spin wave spectrum are discussed.
机译:旋转扭矩驱动的铁磁共振(ST-FMR)用于研究纳入纳入的CO / NI合成层中的磁激发。使用垂直于层表面施加的磁场进行扫描ST-FMR测量。在线性响应状态下在低幅度激励下测量谐振线。将得到的共振场与在具有相同CO / Ni层结构的延伸膜上使用的传统RF场驱动的FMR获得的谐振场进行比较。在限制结构中发现了较低的共振场。讨论了作用在旋转波谱中的其他磁性层发出的Co / Ni层上的双极场的效果和对旋转波谱的有限尺寸效应。

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