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Engineered magnetic shape anisotropy in BiFeO_3-CoFe _2O_4 self-assembled thin films

机译:BiFeO_3-CoFe _2O_4自组装薄膜的工程磁形状各向异性

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摘要

We report growth of various phase architectures of self-assembled BiFeO_3-CoFe_2O_4 (BFO-CFO) thin films on differently oriented SrTiO_3 (STO) substrates. CFO forms segregated square, stripe, and triangular nanopillars embedded in a coherent BFO matrix on (001)-, (110)-, and (111)-oriented STO substrates, respectively. Nanostructures with an aspect ratio of up to 5:1 with a prominent magnetic anisotropy were obtained on both (001) and (110) STO along out-of-plane and in-plane directions. Magnetic easy axis rotation from in-plane to out-of-plane directions was realized through aspect ratio control. An intractable in-plane anisotropy was fixed in CFO on (111) STO due to the triangular shape of the ferromagnetic phase nanopillars. These studies established a detailed relationship of magnetic anisotropy with specific shape and dimensions of ordered magnetic arrays. The results suggest a way to effectively control the magnetic anisotropy in patterned ferromagnetic oxide arrays with tunable shape, aspect ratio, and elastic strain conditions of the nanostructures.
机译:我们报告了在不同取向的SrTiO_3(STO)基板上自组装BiFeO_3-CoFe_2O_4(BFO-CFO)薄膜的各种相结构的增长。 CFO分别在面向(001)-,(110)-和(111)的STO基板上形成嵌入在相干BFO矩阵中的方形,条纹和三角形纳米柱。在(001)和(110)STO上沿平面外和平面内方向都获得了具有高达5:1的纵横比且具有显着的磁各向异性的纳米结构。通过纵横比控制实现了从平面内到平面外方向的易磁化轴旋转。由于铁磁相纳米柱的三角形形状,在(111)STO的CFO中固定了难以解决的面内各向异性。这些研究建立了磁各向异性与有序磁阵列的特定形状和尺寸的详细关系。结果提出了一种有效控制图案化铁磁氧化物阵列中具有可调形状,纵横比和纳米结构弹性应变条件的磁各向异性的方法。

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