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外延多铁性 CoFeO/ BaTiO 异质结构中的应变、铁电性和铁磁性的交叉关联。

Cross-Correlation between Strain, Ferroelectricity, and Ferromagnetism in Epitaxial Multiferroic CoFeO/BaTiO Heterostructures.

机构信息

Institut des Nano Sciences de Paris (INSP) , Sorbonne Université, CNRS UMR 7588 , 4 Place Jussieu , 75252 Paris Cedex 05 , France.

Service de Physique de l'Etat Condensé (SPEC), CEA, CNRS UMR 3680, Université Paris Saclay, Orme des Merisiers, CEA Saclay , 91191 Gif sur Yvette Cedex , France.

出版信息

ACS Appl Mater Interfaces. 2018 Aug 22;10(33):28003-28014. doi: 10.1021/acsami.8b09499. Epub 2018 Aug 7.

Abstract

Multiferroic biphase systems with robust ferromagnetic and ferroelectric response at room temperature would be ideally suitable for voltage-controlled nonvolatile memories. Understanding the role of strain and charges at interfaces is central for an accurate control of the ferroelectricity as well as of the ferromagnetism. In this paper, we probe the relationship between the strain and the ferromagnetic/ferroelectric properties in the layered CoFeO/BaTiO (CFO/BTO) model system. For this purpose, ultrathin epitaxial bilayers, ranging from highly strained to fully relaxed, were grown by molecular beam epitaxy on Nb:SrTiO(001). The lattice characteristics, determined by X-ray diffraction, evidence a non-intuitive cross-correlation: the strain in the bottom BTO layer depends on the thickness of the top CFO layer and vice versa. Plastic deformation participates in the relaxation process through dislocations at both interfaces, revealed by electron microscopy. Importantly, the switching of the BTO ferroelectric polarization, probed by piezoresponse force microscopy, is found dependent on the CFO thickness: the larger is the latter, the easiest is the BTO switching. In the thinnest thickness regime, the tetragonality of BTO and CFO has a strong impact on the 3d electronic levels of the different cations, which were probed by X-ray linear dichroism. The quantitative determination of the nature and repartition of the magnetic ions in CFO, as well as of their magnetic moments, has been carried out by X-ray magnetic circular dichroism, with the support of multiplet calculations. While bulklike ferrimagnetism is found for 5-15 nm thick CFO layers with a magnetization resulting as expected from the Co ions alone, important changes occur at the interface with BTO over a thickness of 2-3 nm because of the formation of Fe and Co ions. This oxidoreduction process at the interface has strong implications concerning the mechanisms of polarity compensation and coupling in multiferroic heterostructures.

摘要

多铁双相体系在室温下具有稳健的铁磁性和铁电性响应,非常适合用于电压控制的非易失性存储器。了解应变和界面电荷的作用对于准确控制铁电性和铁磁性至关重要。在本文中,我们研究了应变与层状 CoFeO/BaTiO(CFO/BTO)模型系统中铁电性和铁磁性之间的关系。为此,我们通过分子束外延在 Nb:SrTiO(001)上生长了从高度应变到完全弛豫的超薄外延双层。X 射线衍射确定的晶格特性表明存在一种非直观的交叉相关性:底部 BTO 层的应变取决于顶部 CFO 层的厚度,反之亦然。电子显微镜揭示了界面处位错参与了弛豫过程。重要的是,压电力显微镜探测到的 BTO 铁电极化的翻转取决于 CFO 的厚度:后者越大,BTO 的翻转越容易。在最薄的厚度范围内,BTO 和 CFO 的各向异性对不同阳离子的 3d 电子能级有很强的影响,这可以通过 X 射线线性二色性进行探测。X 射线磁圆二色性结合多组态计算,对 CFO 中磁性离子的性质和分布以及它们的磁矩进行了定量测定。对于 5-15nm 厚的 CFO 层,发现具有类似于块状亚铁磁体的性质,其磁化强度仅来自 Co 离子,但在与 BTO 的界面上,由于 Fe 和 Co 离子的形成,在 2-3nm 的厚度范围内会发生重要变化。这种界面上的氧化还原过程对多铁异质结构中极性补偿和耦合的机制有重要影响。

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