论文标题

铁电/电介质PBTIO $ _3 $/srtio $ _3 $ superlattice nanostructures中的域对齐

Domain alignment within ferroelectric/dielectric PbTiO$_3$/SrTiO$_3$ superlattice nanostructures

论文作者

Park, J., Mangeri, J., Zhang, Q., Yusuf, M. H., Pateras, A., Dawber, M., Holt, M. V., Heinonen, O. G., Nakhmanson, S., Evans, P. G.

论文摘要

光刻定义的PBTIO3/SRTIO3铁电/介电异质超级晶格纳米结构中的铁电域模式受到结构边缘的强烈影响。同步加速器X射线纳米氨基调衍射表明,这种超晶格表现出的自发形成的180°铁电条纹结构域在矩形纳米结构中采用构型,在矩形纳米结构中,该构壁与长图案的边缘对齐。 X射线扩散散射强度从纳米域的角度分布表明,相对于边缘,域在大约20°的角范围内对齐。基于时间依赖性的Landau-Ginzburg-Devonshire模型的计算研究表明,对准的首选方向是由于横向机械约束的释放而降低了整体和电图对系统自由能的贡献。这种意外的对准似乎是固有的,不是由图案过程引起的扭曲或缺陷的结果。我们的工作表明了杂音超级晶格的纳米结构和模式如何允许创建和控制可能看起来违反直觉的铁电结构的途径。

The ferroelectric domain pattern within lithographically defined PbTiO3/SrTiO3 ferroelectric/dielectric heteroepitaxial superlattice nanostructures is strongly influenced by the edges of the structures. Synchrotron x-ray nanobeam diffraction reveals that the spontaneously formed 180° ferroelectric stripe domains exhibited by such superlattices adopt a configuration in rectangular nanostructures in which domain walls are aligned with long patterned edges. The angular distribution of x-ray diffuse scattering intensity from nanodomains indicates that domains are aligned within an angular range of approximately 20° with respect to the edges. Computational studies based on a time-dependent Landau-Ginzburg-Devonshire model show that the preferred direction of the alignment results from lowering of the bulk and electrostrictive contributions to the free energy of the system due to the release of the lateral mechanical constraint. This unexpected alignment appears to be intrinsic and not a result of distortions or defects caused by the patterning process. Our work demonstrates how nanostructuring and patterning of heteroepitaxial superlattices allow for pathways to create and control ferroelectric structures that may appear counterintuitive.

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