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Local manifestations of a static magnetoelectric effect in nanostructured BaTiO3-BaFe12O9 composite multiferroics

机译:纳米结构BaTiO3-BaFe12O9复合多铁体系中静态磁电效应的局部表现

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摘要

A study on magnetoelectric phenomena in the barium titanate-barium hexaferrite (BaTiO3-BaFe12O19) composite system, using high resolution techniques including switching spectroscopy piezoresponse force microscopy (SSPFM) and spatially resolved confocal Raman microscopy (CRM), is presented. It is found that both the local piezoelectric coefficient and polarization switching parameters change on the application of an external magnetic field. The latter effect is rationalized by the influence of magnetostrictive stress on the domain dynamics. Processing of the Raman spectral data using principal component analysis (PCA) and self-modelling curve resolution (SMCR) allowed us to achieve high resolution phase distribution maps along with separation of average and localized spectral components. A significant effect of the magnetic field on the Raman spectra of the BaTiO3 phase has been revealed. The observed changes are comparable with the classical pressure dependent studies on BaTiO3, confirming the strain mediated character of the magnetoelectric coupling in the studied composites.
机译:提出了使用高分辨率技术的钛酸钡-六价铁酸钡(BaTiO3-BaFe12O19)复合系统中的磁电现象的研究,其中包括切换光谱压敏力显微镜(SSPFM)和空间分辨共聚焦拉曼显微镜(CRM)。已经发现,局部压电系数和极化切换参数都随着外部磁场的施加而改变。后一种效应是通过磁致伸缩应力对磁畴动力学的影响而合理化的。使用主成分分析(PCA)和自建模曲线分辨率(SMCR)对拉曼光谱数据进行处理,使我们能够获得高分辨率的相位分布图以及平均和局部光谱分量的分离。已经揭示了磁场对BaTiO 3相的拉曼光谱的显着影响。观察到的变化与经典的BaTiO3压力依赖性研究相当,从而证实了所研究复合材料中磁电耦合的应变介导特性。

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