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Static and high frequency magnetic properties of FeGa thin films deposited on convex flexible substrates

机译:凸形柔性基板上沉积的FeGa薄膜的静态和高频磁性能

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In this study, we provided an approach of pre-strained growth to significantly enhance the FMR frequency of magnetic films. A series of 100 nm magnetostrictive FeGa films were grown on flexible polyethylene terephthalate (PET) substrates which were bowed onto the convex molds with different curvature radii. When the FeGa films were flatten to a plane, they were suffered a compressive strain arisen from the shaped substrates. As shown in Figs . 1(a) and 1(b), the FeGa films exhibit a remarkable uniaxial anisotropy perpendicular to the compressive strain. The strength of magnetic anisotropy is enhanced with increasing the compressive strain from 0 to 0 .78%. The permeability spectra measured in the frequency range from 0 .5 to 8 GHz are shown in Figs . 1(c) and 1(d). With the increase of the compressive-strain induced magnetic anisotropy, the initial permeability μ of the FeGa films inconspicuously decreases, while the FMR frequency shifts toward the higher values. In order to quantitatively understanding the effect of strain on the dynamic properties of the FeGa thin films, the experimentally obtained permeability spectra can be fitted by using the Landau-Lifshitz-Gilbert (LLG) theory.
机译:在这项研究中,我们提供了一种预应变生长的方法,可以显着提高磁性膜的FMR频率。在柔性聚对苯二甲酸乙二酯(PET)基底上生长一系列100 nm磁致伸缩FeGa薄膜,这些基底弯曲到具有不同曲率半径的凸模上。当FeGa薄膜被压平成平面时,它们会受到成型基材的压缩应变。如图所示。如图1(a)和1(b)所示,FeGa膜表现出垂直于压缩应变的显着的单轴各向异性。磁各向异性的强度随着压缩应变从0增加到0.78%而增强。在0 .5至8 GHz的频率范围内测量的渗透率谱示于图2和3中。 1(c)和1(d)。随着压应变感应磁各向异性的增加,FeGa薄膜的初始磁导率μ显着降低,而FMR频率向更高的方向偏移。为了定量了解应变对FeGa薄膜动力学特性的影响,可以使用Landau-Lifshitz-Gilbert(LLG)理论拟合实验获得的磁导率谱。

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