Drovosekov A B, Kreines N M, Savitsky A O, Kravtsov E A, Ryabukhina M V, Proglyado V V, Ustinov V V
P. L. Kapitza Institute for Physical Problems RAS, Kosygina St. 2, 119334 Moscow, Russia.
J Phys Condens Matter. 2017 Mar 22;29(11):115802. doi: 10.1088/1361-648X/aa54f1. Epub 2016 Dec 20.
Static and dynamic magnetic properties of a [Fe(35 Å)/Gd(50 Å)] superlattice are investigated experimentally in the temperature range 5-295 K using SQUID magnetometery and the ferromagnetic resonance (FMR) technique at frequencies 7-38 GHz. The obtained magnetization curves and FMR spectra are analysed theoretically using numerical simulation on the basis of the effective field model. At every given temperature, both static and resonance experimental data can be approximated well within the proposed model. However, a considerable temperature dependence of the effective field parameter in gadolinium layers has to be taken into account to achieve reasonable agreement with the experimental data in the entire temperature range studied. To describe the peculiarities of experimental FMR spectra, a non-local diffusion-type absorption term in Landau-Lifshitz equations is considered in addition to the Gilbert damping term. Possible reasons for the observed effects are discussed.
利用超导量子干涉仪磁强计和频率为7 - 38 GHz的铁磁共振(FMR)技术,在5 - 295 K的温度范围内对[Fe(35 Å)/Gd(50 Å)]超晶格的静态和动态磁特性进行了实验研究。基于有效场模型,通过数值模拟从理论上分析了所获得的磁化曲线和FMR谱。在每个给定温度下,所提出的模型都能很好地拟合静态和共振实验数据。然而,为了在所研究的整个温度范围内与实验数据达成合理一致,必须考虑钆层中有效场参数相当大的温度依赖性。为了描述实验FMR谱的特性除了吉尔伯特阻尼项外,还在朗道 - 里夫希茨方程中考虑了一个非局部扩散型吸收项。讨论了观察到这些效应的可能原因。