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Ferromagnetic resonance and spin momentum exchange in crystal magnetic ultrathin films in noncollinear configuration

机译:非可口配置中晶体磁性超薄薄膜的铁磁共振和旋转动量交换

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Au/Fe/Au/Fe/GaAs(001) uitrathin film structures were grown by molecular beam epitaxy on 4 X 6 reconstructed GaAs(OOl) substrates. Measurements were carried out using a network microwave analyzer in the range of frequencies from 1 to 12 GHz allowing one to determine both the in-phase and out-of-phase components of the rf magnetic susceptibility. The ferromagnetic resonance (FMR) results indicate that the uitrathin Fe films are of high crystalline quality. The bottom Fe film [Au/Fe/GaAs(001)] has its magnetic hard axis along the [1-10] direction due to a strong in-plane uniaxial interface anisotropy. This leads to a unique behavior of the FMR in noncollinear configuration. Beside the 2 two FMR peaks expected an additional FMR peak was observed in a narrow microwave frequency range. This peak can be explained as a "ghost resonance" which was driven purely by magnetic losses. The FMR linewidth is mostly given by the bulk intrinsic Gilbert damping and spin pumping, and is only weakly affected by small local variations of the internal anisotropy fields. An accidental crossover of the collinear FMR branch of the top Fe layer (Au/Fe/Au) with the noncollinear branch of the bottom (Au/Fe/GaAs) layer was used to investigate nonlocal spin pumping and spin sink effects in a noncollinear configuration of magnetic moments.
机译:Au / Fe / Au / Fe / GaAs(001)通过分子束外延生长4×6重建的GaAs(OOL)底物的分子束外延。使用网络微波分析仪在频率范围内进行测量,允许一个允许射频磁化率的同相和异相分量进行测量。铁磁共振(FMR)结果表明,UITATHIN FE膜具有高结晶质量。由于强大的平面内单轴接口各向异性,底部Fe膜[Au / Fe / GaAs(001)]沿着[1-10]方向具有其磁力轴线。这导致FMR在非可口配置中的独特行为。除了2个FMR峰旁边,预期在窄的微波频率范围内观察到额外的FMR峰。该峰可以解释为“Ghost谐振”,其纯粹通过磁损失驱动。 FMR线宽主要由散装内在吉尔伯特阻尼和自旋泵送给出,并且仅受到内部各向异性场的小局部变化的弱影响。用底部(AU / Fe / GaAs)层的非可折叠分支的顶部Fe层(Au / Fe / Au)的共线FMR分支的意外交叉用于研究非竞争配置下的非竞争旋转泵送和旋转沉降效应磁矩。

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