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Topological polar structures in ferroelectric oxide films

机译:铁电氧化膜中的拓扑极性结构

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摘要

The continuous rotation of electric dipoles, which is inspired by unusual spin textures in magnetic materials, has been envisioned by theoretical modelings in last two decades. Although in electrically polar systems it was thought to be difficult to introduce continuous rotation of electric dipoles since similar Dzyaloshinskii-Moriya interaction like that of ferromagnets is still under study, external strains and interface depolarization fields have been then identified to be critical for rotating electric dipoles in nano-scale oxide films/superlattices. In this Perspective, we will briefly summarize the experimental finding of the newly identified topological polar structures and corresponding properties, such as polar flux-closure, vortex, skyrmion lattice, and meron. The critical importance of microscopy technologies, especially the advanced aberration-corrected transmission electron microscopy with ultra-high spatial resolutions, will be emphasized. Moreover, physical aspects to be addressed in the future, such as the strain maintenance and relaxation mechanisms of polar systems/superlattices, atomic maps of three-dimensional topological polar structures, and flexoelectricity-related properties, will be highlighted and envisioned.
机译:通过磁性材料中的不寻常的旋转纹理启发的电偶联的连续旋转已经通过后续二十年来通过理论建模来设想。尽管在电极系统中,被认为难以引入电偶极子的连续旋转,因为类似于铁磁体的类似Dzyaloshinskii-moriya相互作用仍然正在研究,然后被识别出外部菌株和界面去极化场对旋转电偶极级至关重要在纳米级氧化膜/超晶格中。在这种观点中,我们将简要概述新识别的拓扑极性结构和相应性质的实验结果,例如极性磁通件,涡旋,斯基义格子和梅林。将强调显微镜技术,特别是具有超高空间分辨率的先进的像差校正透射电子显微镜的关键重要性。此外,将来,将要解决的物理方面,例如极性系统/超晶格的应变维护和弛豫机制,三维拓扑结构的原子贴图,以及柔性电性相关性能,并设想。

著录项

  • 来源
    《Journal of Applied Physics》 |2021年第20期|200904.1-200904.9|共9页
  • 作者

    Y. L Tang; Y. L. Zhu; X. L. Ma;

  • 作者单位

    Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences Wenhua Road 72 110016 Shenyang China;

    Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences Wenhua Road 72 110016 Shenyang China Songshan Lake Materials Laboratory Dongguan Guangdong 523808 China;

    Shenyang National Laboratory for Materials Science Institute of Metal Research Chinese Academy of Sciences Wenhua Road 72 110016 Shenyang China State Key Lab of Advanced Processing and Recycling on Non-ferrous Metals Lanzhou University of Technology Langongping Road 287 730050 Lanzhou China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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