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Magnetic stripes and skyrmions with helicity reversals

机译:具有螺旋度反转的磁条和天体

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摘要

It was recently realized that topological spin textures do not merely have mathematical beauty but can also give rise to unique functionalities of magnetic materials. An example is the skyrmion-a nano-sized bundle of noncoplanar spins-that by virtue of its nontrivial topology acts as a flux of magnetic field on spin-polarized electrons. Lorentz transmission electron microscopy recently emerged as a powerful tool for direct visualization of skyrmions in noncentrosymmetric helimagnets. Topologically, skyrmions are equivalent to magnetic bubbles (cylindrical domains) in ferromagnetic thin films, which were extensively explored in the 1970s for data storage applications. In this study we use Lorentz microscopy to image magnetic domain patterns in the prototypical magnetic oxide-M-type hexaferrite with a hint of scandium. Surprisingly, we find that the magnetic bubbles and stripes in the hexaferrite have a much more complex structure than the skyrmions and spirals in helimagnets, which we associate with the new degree of freedom-helicity (or vector spin chirality) describing the direction of spin rotation across the domain walls. We observe numerous random reversals of helicity in the stripe domain state. Random helicity of cylindrical domain walls coexists with the positional order of magnetic bubbles in a triangular lattice. Most unexpectedly, we observe regular helicity reversals inside skyrmions with an unusual multiple-ring structure.
机译:最近已经认识到,拓扑自旋纹理不仅具有数学上的美,而且还可以引起磁性材料的独特功能。一个例子是天rm子-一种纳米尺寸的非共面自旋束-由于其非平凡的拓扑结构而充当自旋极化电子上的磁场通量。洛伦兹透射电子显微镜最近成为一种功能强大的工具,可以直接可视化非中心对称螺旋藻中的天体离子。从拓扑上看,Skyrmion相当于铁磁薄膜中的磁泡(圆柱域),在1970年代为数据存储应用进行了广泛探索。在这项研究中,我们使用Lorentz显微镜对原型磁性氧化物M型六铁氧体中带有magnetic的图像成像。出乎意料的是,我们发现六方铁氧体中的磁气泡和条纹的结构比helimagnets中的天空碎片和螺旋复杂得多,这与描述自旋旋转方向的新自由度-螺旋度(或矢量自旋手征度)相关联跨域墙。我们观察到在条带域状态下螺旋的许多随机逆转。圆柱形畴壁的随机螺旋与三角形晶格中磁气泡的位置顺序共存。最出乎意料的是,我们观察到具有不寻常的多环结构的天体内部的常规螺旋度反转。

著录项

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  • 作者单位

    Correlated Electron Research Group and Cross-Correlated Materials Research Group, RIKEN Advanced Science Institute, Wako 351-0198, Japan;

    Zemike Institute for Advanced Materials, University of Groningen, Nijenborgh 4, 9747 AG, Groningen, The Netherlands;

    Correlated Electron Research Group and Cross-Correlated Materials Research Group, RIKEN Advanced Science Institute, Wako 351-0198, Japan;

    Electron Microscopy Group and External Collaboration Division, National Institute for Materials Science, Tsukuba 305-0044, Japan;

    Electron Microscopy Group and External Collaboration Division, National Institute for Materials Science, Tsukuba 305-0044, Japan;

    Electron Microscopy Group and External Collaboration Division, National Institute for Materials Science, Tsukuba 305-0044, Japan;

    Multiferroics Project, Exploratory Research for Advanced Technology, Japan Science and Technology Agency, Tokyo 113-8656, Japan;

    Correlated Electron Research Group and Cross-Correlated Materials Research Group, RIKEN Advanced Science Institute, Wako 351-0198, Japan,Department of Applied Physics and Quantum-Phase Electronics Center,University of Tokyo, Tokyo 113-8656, Japan;

    Correlated Electron Research Group and Cross-Correlated Materials Research Group, RIKEN Advanced Science Institute, Wako 351-0198, Japan,Multiferroics Project, Exploratory Research for Advanced Technology, Japan Science and Technology Agency, Tokyo 113-8656, Japan Department of Applied Physics and Quantum-Phase Electronics Center,University of Tokyo, Tokyo 113-8656, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lorentz TEM; topological defects; ba ferrite; rotated spins; bloch lines;

    机译:洛伦兹TEM;拓扑缺陷;钡铁氧体旋转旋转斑点线;
  • 入库时间 2022-08-18 00:40:24

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