Ordered arrays of multiferroic epitaxial nanostructures.

Ionela Vrejoiu, Alessio Morelli, Daniel Biggemann, Eckhard Pippel
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引用次数: 17

Abstract

Unlabelled: Epitaxial heterostructures combining ferroelectric (FE) and ferromagnetic (FiM) oxides are a possible route to explore coupling mechanisms between the two independent order parameters, polarization and magnetization of the component phases. We report on the fabrication and properties of arrays of hybrid epitaxial nanostructures of FiM NiFe(2)O(4) (NFO) and FE PbZr(0.52)Ti(0.48)O(3) or PbZr(0.2)Ti(0.8)O(3), with large range order and lateral dimensions from 200 nm to 1 micron.

Methods: The structures were fabricated by pulsed-laser deposition. High resolution transmission electron microscopy and high angle annular dark-field scanning transmission electron microscopy were employed to investigate the microstructure and the epitaxial growth of the structures. Room temperature ferroelectric and ferrimagnetic domains of the heterostructures were imaged by piezoresponse force microscopy (PFM) and magnetic force microscopy (MFM), respectively.

Results: PFM and MFM investigations proved that the hybrid epitaxial nanostructures show ferroelectric and magnetic order at room temperature. Dielectric effects occurring after repeated switching of the polarization in large planar capacitors, comprising ferrimagnetic NiFe2O4 dots embedded in ferroelectric PbZr0.52Ti0.48O3 matrix, were studied.

Conclusion: These hybrid multiferroic structures with clean and well defined epitaxial interfaces hold promise for reliable investigations of magnetoelectric coupling between the ferrimagnetic / magnetostrictive and ferroelectric / piezoelectric phases.

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多铁外延纳米结构的有序阵列。
未标记:结合铁电(FE)和铁磁(FiM)氧化物的外延异质结构是探索组分相的极化和磁化两个独立有序参数之间耦合机制的可能途径。本文报道了FE - nfe (2)O(4) (NFO)和FE - PbZr(0.52)Ti(0.48)O(3)或PbZr(0.2)Ti(0.8)O(3)混合外延纳米结构阵列的制备和性能,具有大范围有序和横向尺寸从200 nm到1微米。方法:采用脉冲激光沉积法制备结构。采用高分辨透射电子显微镜和高角环形暗场扫描透射电子显微镜对结构的微观结构和外延生长进行了研究。利用压响应力显微镜(PFM)和磁力显微镜(MFM)分别对异质结构的室温铁电畴和铁磁畴进行了成像。结果:PFM和MFM研究表明,混合外延纳米结构在室温下呈现铁电有序和磁性有序。研究了在铁电PbZr0.52Ti0.48O3基体中嵌入铁磁性NiFe2O4点的大型平面电容器中反复极化开关后的介电效应。结论:这些具有明确外延界面的杂化多铁结构有望可靠地研究铁磁/磁致伸缩相和铁电/压电相之间的磁电耦合。
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