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Nonlinear domain-mode ferromagnetic resonances in garnet films with perpendicular anisotropy

机译:具有垂直各向异性的石榴石膜中的非线性域模式铁磁性共振

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The zero-field domain-mode ferromagnetic resonances (DM-FMRs) in the weakly nonlinear regime have been investigated for garnet films with a perpendicular anisotropy supporting parallel stripe domains by means of broadband microwave measurements, and analytical and numerical approaches. First, the perpendicular ferromagnetic resonance (FMR) in the saturated state is considered as a reference case. A redshift of the resonance frequency and a broadening of the resonance line are experimentally observed for increasing the input microwave power. These power-dependent characteristics are nicely reproduced by an analytical model taking into account the linear polarization of the pumping field and a nonlinear Gilbert-type damping parameter. Then, the effect of the stripe domain pattern is analyzed. A redshift and a line broadening are also experimentally revealed both for the acoustic and the optical modes with an anisotropic character between the two modes. Numerical simulations based on the DM-FMR model extended in the nonlinear regime and including a nonlinear Gilbert-type damping parameter account quantitatively for the power dependences of the DM resonance frequency shifts and the DM resonance linewidths. These results highlight the requirement of a nonlinear damping term for explaining the FMR and DM-FMR spectra in the weakly nonlinear regime within the framework of the phenomenological approach of magnetization dynamics.
机译:已经通过宽带微波测量研究了具有垂直各向异性的石榴石膜的零场域 - 模式铁磁性谐振(DM-FMRS),并通过宽带微波测量和分析和数值方法来研究垂直各向异性。首先,饱和状态下的垂直铁磁共振(FMR)被认为是参考情况。实验观察到增加谐振线的共振频率和扩大的红移,以增加输入微波功率。考虑到泵送场的线性偏振和非线性吉尔伯特型阻尼参数的分析模型,这些依赖性特征很好地再现。然后,分析条纹域模式的效果。还通过两种模式之间具有各向异性特性的声学和光学模式来实验地揭示了红移和线宽化。基于非线性地区延伸的DM-FMR模型的数值模拟,包括非线性Gilbert型阻尼参数账号,用于DM谐振频率偏移的功率依赖性和DM谐振线宽。这些结果突出了非线性阻尼术语的要求,用于解释磁化动力学现象方法框架内的弱非线性方案中的FMR和DM-FMR光谱。

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  • 来源
    《Physical review 》 |2019年第22期| 224423.1-224423.13| 共13页
  • 作者

    Vukadinovic N.; Ben Youssef J.;

  • 作者单位

    Dassault Aviat 78 Quai Marcel Dassault F-92552 St Cloud France;

    Univ Bretagne Occidentale CNRS LabSTICC F-29238 Brest France;

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