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Influence of Capping Layers on Magnetic Anisotropy in Fe/MgO/GaAs(100) Ultrathin Films

机译:覆盖层对Fe / MgO / GaAs(100)超薄膜中磁各向异性的影响

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摘要

Magnetic anisotropies of Fe/MgO/GaAs(100) hybrid structure with two different nonmagnetic capping materials, Au and MgO have been studied by ferromagnetic resonance (FMR). A uniaxial anisotropy, unexpected from the crystal structure was observed in the ultrathin films for both capping materials. Its global easy axis is along [0-11] direction while two $langle 010rangle$ directions are equally magnetic hard regardless of the overlayer material. The in-plane uniaxial anisotropy (in-plane cubic anisotropy) of the Au capped samples is stronger (weaker) than that of the MgO capped ones within the range of ${t}_{rm Fe}= $ 7.1 to 28 ML. This suggests that the MgO overlayer suppresses the uniaxial anisotropy faster than the Au overlayer.
机译:通过铁磁共振(FMR)研究了Fe / MgO / GaAs(100)杂化结构与两种不同的非磁性覆盖材料Au和MgO的磁各向异性。在两种覆盖材料的超薄膜中均观察到单晶各向异性,这是晶体结构无法预料的。其全局易轴沿[0-11]方向,而两个$ langle 010rangle $方向均具有相同的磁性,而与覆盖层材料无关。在$ {t} _ {rm Fe} = $ 7.1至28 ML的范围内,Au封端的样品的面内单轴各向异性(面内立方各向异性)比MgO封端的样品的面内单轴各向异性(更弱)。这表明,MgO覆盖层比Au覆盖层更快地抑制了单轴各向异性。

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