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Probing the local strain-mediated magnetoelectric coupling in multiferroic nanocomposites by magnetic field-assisted piezoresponse force microscopy

机译:通过磁场辅助的压电响应力显微镜探测局部应变介导的磁电耦合

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摘要

The magnetoelectric effect that occurs in multiferroic materials is fully described by the magnetoelectric coupling coefficient induced either electrically or magnetically. This is rather well understood in bulk multiferroics, but it is not known whether the magnetoelectric coupling properties are retained at nanometre length scales in nanostructured multiferroics. The main challenges are related to measurement difficulties of the coupling at nanoscale, as well as the fabrication of suitable nano-multiferroic samples. Addressing these issues is an important prerequisite for the implementation of multiferroics in future nanoscale devices and sensors. In this paper we report on the local measurement of the magnetoelectric coefficient in bilayered ceramic nanocomposites from the variation in the longitudinal piezoelectric coefficient of the electrostrictive layer in the presence of a magnetic field. The experimental data were analyzed using a theoretical relationship linking the piezoelectric coefficient to the magneto-electric coupling coefficient. Our results confirm the presence of a measurable magnetoelectric coupling in bilayered nanocomposites constructed by a perovskite as the electrostrictive phase and two different ferrites (cubic spinel and hexagonal) as the magnetic phases. The reported experimental values as well as our theoretical approach are both in good agreement with previously published data for bulk and nanostructure magnetoelectric multiferroics.
机译:在多效材料中发生的磁电效应通过电或磁性诱导的磁耦合系数充分描述。这在散装多效应中是相当理解的,但是尚不清楚磁电耦合特性是否保留在纳米结构的多膜尺度的纳米长度尺度上。主要挑战与纳米级耦合的测量困难以及合适的纳米型型样品的制造有关。解决这些问题是在未来的纳米级设备和传感器中实施多铁龙的重要先决条件。在本文中,我们报告了在存在磁场的情况下电图层的纵向压电系数的变化中,报告了双层陶瓷纳米复合材料中磁性系数的局部测量。使用将压电系数与磁电耦合系数联系起来的理论关系分析了实验数据。我们的结果证实了由钙钛矿构成的双层纳米复合材料中存在可测量的磁电耦合,作为电绞痛相,两种不同的铁氧体(立方尖晶石和六边形)作为磁相。报道的实验值以及我们的理论方法都与先前发布的散装和纳米结构磁电磁多型多纹镜的数据非常吻合。

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