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Ferromagnetic resonance study of thickness-dependent magnetization precession in Ni_(80)Fe_(20) films

机译:Ni_(80)Fe_(20)薄膜厚度依赖磁化进料的铁磁共振研究

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The ferromagnetic resonance (FMR) behaviors for Ni_(80)Fe_(20) Permalloy films with a wide thickness range from 30 to 360 nm were investigated. The FMR measurements were performed by a vector network analyzer (VNA) technique with scanning frequency at a specified external field. The measured frequency response was fitted well by the theoretical precession conditions. The FMR results show that the effective saturation magnetization, mu_0M_(eff), increases from 1.01 to 1.36 T, while the film thickness varies from 30 to 360 nm. A discontinuous transition is observed at the thickness of 90 nm, which corresponds to the transformation boundary of domain wall from Neel to Bloch type in Permalloy films. Meanwhile, the variation of damping coefficient with film thickness also shows a discontinuity at 90 nm. For films thinner than 90 nm, the dampings vary insignificantly with film thickness. For films thicker than 90 nm, the damping coefficient varies linearly with the thickness. The result could be explained by the magnon scattering through nonuniform magnetization.
机译:研究了Ni_(80)Fe_(20)倍晶膜的铁磁共振(FMR)行为,宽厚范围为30-360nm。通过在指定的外部字段处具有扫描频率的矢量网络分析器(VNA)技术进行FMR测量。通过理论的预介质条件良好地安装了测量的频率响应。 FMR结果表明,有效饱和磁化强度,MU_0M_(EFF)从1.01增加到1.36吨,而膜厚度从30到360nm变化。在90nm的厚度下观察到不连续的转变,其对应于透晶膜的畴壁的畴壁的变化边界。同时,具有膜厚度的阻尼系数的变化也显示出90nm处的不连续性。对于薄膜薄于90nm,阻尼膜厚度差异很大。对于厚度小于90nm的薄膜,阻尼系数随着厚度而线性变化。结果可以通过非均匀磁化来解释。

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