首页> 美国卫生研究院文献>Nanoscale Research Letters >Local Magnetoelectric Effect in La-Doped BiFeO3 Multiferroic Thin Films Revealed by Magnetic-Field-Assisted Scanning Probe Microscopy
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Local Magnetoelectric Effect in La-Doped BiFeO3 Multiferroic Thin Films Revealed by Magnetic-Field-Assisted Scanning Probe Microscopy

机译:磁场辅助扫描探针显微镜揭示的La掺杂BiFeO3多铁性薄膜中的局部磁电效应

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摘要

Multiferroic La-doped BiFeO3 thin films have been prepared by a sol-gel plus spin-coating process, and the local magnetoelectric coupling effect has been investigated by the magnetic-field-assisted scanning probe microscopy connected with a ferroelectric analyzer. The local ferroelectric polarization response to external magnetic fields is observed and a so-called optimized magnetic field of ~40 Oe is obtained, at which the ferroelectric polarization reaches the maximum. Moreover, we carry out the magnetic-field-dependent surface conductivity measurements and illustrate the origin of local magnetoresistance in the La-doped BiFeO3 thin films, which is closely related to the local ferroelectric polarization response to external magnetic fields. This work not only provides a useful technique to characterize the local magnetoelectric coupling for a wide range of multiferroic materials but also is significant for deeply understanding the local multiferroic behaviors in the BiFeO3-based systems.
机译:通过溶胶-凝胶加旋涂工艺制备了掺La的多铁性BiFeO3薄膜,并通过与铁电分析仪连接的磁场扫描探针显微镜研究了局部磁电耦合效应。观察到了对外部磁场的局部铁电极化响应,并获得了〜40 Oe的所谓优化磁场,在该磁场下,铁电极化达到最大值。此外,我们进行了与磁场有关的表面电导率测量,并说明了掺La的BiFeO3薄膜中的局部磁阻的起源,这与对外部磁场的局部铁电极化响应密切相关。这项工作不仅为表征多种多铁性材料的局部磁电耦合提供了有用的技术,而且对于深入理解基于BiFeO3的系统中的局部多铁性行为也具有重要意义。

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