论文标题
磁化和进动的共振进动 - 诱发Fegab薄膜的直流电压
Resonant Precession of Magnetization and Precession -- Induced DC voltages in FeGaB Thin Films
论文作者
论文摘要
报告了针对频率相关的铁磁共振(FMR)和旋转泵送驱动的直流电压(v_ {dc})的fe_ {78} ga_ {78} ga_ {13} b_ {9} b_ {9}(9}(fegab)合金以解决自我诱导的旋转式效果的现象(ishe fallicate fallication)的现象(iShe fallicate faper(ishe fan)的效果(ishe fallic)的无效现象(iShe fallication), v_ {dc}信号是磁场反转的反对称性,由对称和不对称的洛伦兹人组成,围绕共振场。薄膜大小效应的主要作用在设置静态磁化,v_ {dc}的大小和薄膜中磁化进进的动力学(\ leq 8 nm)中。磁化参数的薄膜厚度依赖性表明在膜覆盖界面上存在磁性无序区域,这可能会促进由进攻磁化朝向底物产生的旋转的优先流动。但是,V_ {DC}信号还从A \ 0.4 \%各向异性的磁倍率和这些薄膜的较大(\ 54nΩ.m)异常的霍尔电阻率(AHR)的纠正效果中汲取了贡献,这些电阻率(AHR)的效果超过了Spin-Orbit-Orbit旋转式旋转式旋转式旋转式旋转式摄影的效果,接近拍摄的效果。我们已经在铁磁性薄膜的现有电动力学理论的框架中解决了这些数据,该膜在共面波导几何形状中受到射频场。我们对样品的自我诱导的ISHE的估计为54nΩ.mAHR表明,它可能对测得的对称电压有显着贡献(约90 \%)。预计这项研究将非常有用,可充分了解具有无序界面和较大异常霍尔效应的金属铁磁体中自旋泵送的直流电压。
Measurements of frequency dependent ferromagnetic resonance (FMR) and spin pumping driven dc voltage (V_{dc}) are reported for amorphous films of Fe_{78}Ga_{13}B_{9} (FeGaB) alloy to address the phenomenon of self-induced inverse spin Hall effect (ISHE) in plain films of metallic ferromagnets. The V_{dc} signal, which is antisymmetric on field reversal, comprises of symmetric and asymmetric Lorentzians centered around the resonance field. Dominant role of thin film size effects is seen in setting the magnitude of static magnetization, V_{dc} and dynamics of magnetization precession in thinner films (\leq 8 nm). The film thickness dependence of magnetization parameters indicates the presence of a magnetically disordered region at the film-substrate interface, which may promote preferential flow of spins generated by the precessing magnetization towards the substrate. However, the V_{dc} signal also draws contributions from rectification effects of a \approx 0.4 \% anisotropic magnetoresistance and a large (\approx 54 nΩ.m) anomalous Hall resistivity (AHR) of these films which ride over the effect of spin-orbit coupling driven spin-to-charge conversion near the film-substrate interface. We have addressed these data in the framework of the existing theories of electrodynamics of a ferromagnetic film subjected to radio-frequency field in a coplanar waveguide geometry. Our estimation of the self-induced ISHE for the sample with 54 nΩ.m AHR shows that it may contribute significantly (\approx 90\%) to the measured symmetric voltage. This study is expected to be very useful for fully understanding the spin pumping induced dc voltages in metallic ferromagnets with disordered interfaces and large anomalous Hall effect.