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Ferroelectric Domain Studies of Patterned (001) BiFeO3 by Angle-Resolved Piezoresponse Force Microscopy

机译:角度分辨压电响应力显微镜研究图案化(001)BiFeO3的铁电畴

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摘要

We have studied the ferroelectric domains in (001) BiFeO3 (BFO) films patterned into mesas with various aspect ratios, using angle-resolved piezoresponse force microscope (AR-PFM), which can image the in-plane polarization component with an angular resolution of 30°. We observed not only stable polarization variants, but also meta-stable polarization variants, which can reduce the charge accumulated at domain boundaries. We considered the number of neighboring domains that are in contact, in order to analyze the complexity of the ferroelectric domain structure. Comparison of the ferroelectric domains from the patterned and unpatterned regions showed that the elastic relaxation induced by removal of the film surrounding the mesas led to a reduction of the average number of neighboring domains, indicative of a decrease in domain complexity. We also found that the rectangular BFO patterns with high aspect ratio had a simpler domain configuration and enhanced piezoelectric characteristics than square-shaped mesas. Manipulation of the ferroelectric domains by controlling the aspect ratio of the patterned BFO thin film mesas can be useful for nanoelectronic applications.
机译:我们已经使用角度分辨压电响应力显微镜(AR-PFM)研究了(001)BiFeO3(BFO)膜中被图案化成各种高宽比的台面中的铁电畴,该成像器可以以角分辨率为的平面内偏振分量成像。 30°。我们不仅观察到稳定的极化变体,而且观察到亚稳态极化变体,这可以减少在畴边界处累积的电荷。为了分析铁电畴结构的复杂性,我们考虑了所接触的相邻畴的数量。从图案化区域和未图案化区域的铁电畴的比较表明,由去除台面周围的膜引起的弹性弛豫导致相邻畴的平均数量减少,这表明畴复杂性降低。我们还发现,具有高纵横比的矩形BFO图案比方形台面具有更简单的畴配置和增强的压电特性。通过控制图案化的BFO薄膜台面的长宽比来操纵铁电畴可用于纳米电子应用。

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