Artificial laminar oxide multiferroic magnetoelectric thin film structures - Elaboration methods and study by synchrotron radiation techniques

C. Mocuta, P. Ohresser, A. Barbier
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Abstract

Nanometric laminar two-dimensional artificial multiferroic oxide thin films can be elaborated using spinel ferrites and perovskite ferroelectrics like CoFe2O4 and BaTiO3. Such materials can retain their individual ferromagnetic or ferroelectric properties. In the thin epitaxial film regime a cross coupling of these properties is possible thanks to strain engineering. After introducing the concepts supporting artificial multiferroic laminar structures, the growth of strained BaTiO3 thin films and the growth of subsequent Co-ferrites layers will be detailed. With respect to the relative film thickness, a detailed understanding of the elastic behavior of these films will be proposed based on the characterization using several synchrotron radiation techniques including x-ray specular and off-specular diffraction, x-ray absorption spectroscopy, as well as x-ray magnetic circular dichroism.
人工层状氧化物多铁磁电薄膜结构。同步辐射技术的加工方法和研究
利用尖晶石铁氧体和钙钛矿铁电体如CoFe2O4和BaTiO3可以制备纳米层状二维人工多铁氧化物薄膜。这些材料可以保留它们各自的铁磁性或铁电性。由于应变工程,在薄外延薄膜中,这些特性的交叉耦合是可能的。在介绍了支持人工多铁质层状结构的概念后,将详细介绍应变BaTiO3薄膜的生长和随后的Co-ferrites层的生长。在相对薄膜厚度方面,我们将基于几种同步辐射技术(包括x射线镜面衍射和非镜面衍射、x射线吸收光谱以及x射线磁圆二色性)的表征,详细了解这些薄膜的弹性行为。
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