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首页> 外文期刊>Nano letters >Domain bundle boundaries in single crystal BaTiO_3 lamellae: Searching for naturally forming dipole flux-closure/quadrupole chains
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Domain bundle boundaries in single crystal BaTiO_3 lamellae: Searching for naturally forming dipole flux-closure/quadrupole chains

机译:单晶BaTiO_3薄片中的畴束边界:寻找自然形成的偶极通量闭合/四极链

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摘要

Naturally occurring boundaries between bundles of 90° stripe domains, which form in BaTiO_3 lamellae on cooling through the Curie Temperature, have been characterized using both piezoresponse force microscopy (PFM) and scanning transmission electron microscopy (STEM). Detailed interpretation of the dipole configurations present at these boundaries (using data taken from PFM) shows that in the vast majority of cases they are composed of simple zigzag 180° domain walls. Topological information from STEM shows that occasionally domain bundle boundaries can support chains of dipole flux closure and quadrupole nanostructures, but these kinds of boundaries are comparatively rare; when such chains do exist, it is notable that singularities at the cores of the dipole structures are avoided. The symmetry of the boundary shows that diads and centers of inversion exist at positions where core singularities should have been expected.
机译:使用压电响应力显微镜(PFM)和扫描透射电子显微镜(STEM)对90°条纹域的束之间自然存在的边界进行了表征,这些束在冷却至居里温度时在BaTiO_3薄片中形成。对这些边界处存在的偶极子构型的详细解释(使用从PFM获得的数据)表明,在大多数情况下,它们由简单的180°锯齿形畴壁组成。来自STEM的拓扑信息表明,畴束边界有时可以支持偶极通量闭合和四极纳米结构的链,但是这类边界相对较少;当确实存在这样的链时,值得注意的是避免了偶极结构的核的奇异性。边界的对称性表明,在应有核心奇异点的位置上存在二元组和反转中心。

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