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Direct Observation of Multiferroic Vortex Domains in YMnO3

机译:YMnO3中多铁性涡旋域的直接观察

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摘要

Topological vortices with swirling ferroelectric, magnetic and structural anti-phase relationship in hexagonal RMnO3 (R = Ho to Lu, Y, and Sc) have attracted much attention because of their intriguing behaviors. Herein, we report the structure of multiferroic vortex domains in YMnO3 at atomic scale using state-of-the-art aberration-corrected scanning transmission electron microscopy (STEM). Two types of displacements were identified among six domain walls (DWs); six translation-ferroelectric domains denoted by α+, γ−, β+, α−, γ+ and β−, respectively, were recognized, demonstrating the interlocking nature of the anti-vortex domain. We found that the anti-vortex core is about four unit cells wide. In addition, we reconstructed the vortex model with three swirling pairs of DWs along the [001] direction. These results are very critical for the understanding of topological behaviors and unusual properties of the multiferroic vortex.
机译:六角形RMnO3中具有涡旋铁电,磁性和结构反相关系的拓扑涡流(R = Ho到Lu,Y和Sc)因其有趣的行为而备受关注。在这里,我们使用最新的像差校正扫描透射电子显微镜(STEM)报告原子尺度下YMnO3中多铁性涡旋结构域的结构。在六个畴壁(DW)之间确定了两种类型的位移。识别出分别由α+,γ-,β+,α-,γ+和β-表示的六个平移铁电畴,证明了反涡旋畴的互锁性质。我们发现,抗涡旋核的宽度约为四个晶胞。另外,我们用沿[001]方向的三个DW涡旋对重建了涡旋模型。这些结果对于理解多铁性涡旋的拓扑行为和异常特性非常关键。

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