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Ferromagnetic resonance linewidth in ultrathin films with perpendicular magnetic anisotropy

机译:具有垂直磁各向异性的超薄膜中的铁磁共振线宽

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Transition-metal ferromagnetic films with perpendicular magnetic anisotropy (PMA) have ferromagnetic resonance (FMR) linewidths that are one order of magnitude larger than soft magnetic materials, such as pure iron (Fe) and Permalloy (NiFe) thin films. A broadband FMR setup has been used to investigate the origin of the enhanced linewidth in a material in which the PMA could be systematically reduced by irradiation with Helium ions: Ni|Co multilayers. The FMR linewidth depends linearly on frequency for perpendicular applied fields and increases significantly when the magnetization is rotated into the film plane. Irradiation of the film with Helium ions decreases the PMA and the distribution of PMA parameters, leading to a large reduction in the FMR linewidth for in-plane magnetization. These results suggest that fluctuations in PMA lead to a large two magnon scattering contribution to the linewidth for in-plane magnetization and establish that the Gilbert damping is enhanced in such materials (α ≈ 0.04, compared to α≈0.002 for pure Fe).
机译:具有垂直磁各向异性(PMA)的过渡金属铁磁膜的铁磁共振线宽比诸如纯铁(Fe)和坡莫合金(NiFe)薄膜之类的软磁材料大1个数量级。宽带FMR装置已用于研究材料中线宽增加的起源,在该材料中,可以通过用氦离子:Ni | Co多层膜辐照来系统地降低PMA。 FMR线宽线性依赖于垂直施加磁场的频率,当磁化强度旋转到薄膜平面时,FMR线宽会显着增加。用氦离子辐照薄膜会降低PMA和PMA参数的分布,从而导致平面内磁化的FMR线宽大大降低。这些结果表明,PMA的波动会导致平面内磁化线宽产生两个较大的磁振子散射,并证明这种材料的吉尔伯特阻尼得到了增强(α≈0.04,而纯铁则为α≈0.002)。

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