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Shape-imposed anisotropy in antiferromagnetic complex oxide nanostructures

机译:反铁磁复合氧化物纳米结构中的形状施加各向异性

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In this study, we report on a shape-imposed magnetic anisotropy in micro- and nanostructures defined in antiferromagnetic (AF) LaFeO3 (LFO) thin films. Two distinct types of structures are investigated: embedded magnets created via ion implantation and free-standing magnets created via ion milling. Using a combination of x-ray photoemission electron microscopy and x-ray absorption spectroscopy, we examine the impact of the structure type, AF layer thickness, and crystal geometry on the Neel vector orientation in these structures. We demonstrate a distinct shape-imposed anisotropy in embedded and free-standing structures alike and show that both parallel and perpendicular alignments of the AF spin axis with respect to structure edges can be achieved by variation of the AF layer thickness and the orientation of the structure edges with respect to the LFO crystalline axes. This work demonstrates how the fabrication procedure affects the magnetic order in thin film AF nanostructures and shows how nanoscale patterning can be used to control the orientation of the Neel vector in epitaxial oxide thin films.
机译:在这项研究中,我们报告了在反铁磁(AF)LaFeO3(LFO)薄膜中定义的微结构和纳米结构中施加的形状各向异性。研究了两种不同类型的结构:通过离子注入产生的嵌入式磁体和通过离子铣削产生的独立式磁体。通过结合使用X射线电子发射电子显微镜和X射线吸收光谱,我们研究了结构类型,AF层厚度和晶体几何形状对这些结构中Neel矢量取向的影响。我们展示了嵌入和独立式结构中独特的形状附加各向异性,并表明通过改变AF层的厚度和结构的方向可以实现AF自旋轴相对于结构边缘的平行和垂直对齐相对于LFO晶轴的边缘。这项工作演示了制造过程如何影响薄膜AF纳米结构中的磁序,并展示了如何使用纳米级图案控制外延氧化物薄膜中Neel向量的取向。

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