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受限几何结构中零场反斯格明子的形成与控制

Formation and Control of Zero-Field Antiskyrmions in Confining Geometries.

作者信息

Peng Licong, Iakoubovskii Konstantin V, Karube Kosuke, Taguchi Yasujiro, Tokura Yoshinori, Yu Xiuzhen

机构信息

RIKEN Center for Emergent Matter Science, Wako, 351-0198, Japan.

Department of Applied Physics, University of Tokyo, Bunkyo-ku, 113-8656, Japan.

出版信息

Adv Sci (Weinh). 2022 Oct;9(28):e2202950. doi: 10.1002/advs.202202950. Epub 2022 Aug 17.

Abstract

Magnetic skyrmions and antiskyrmions have attracted much interest owing to their topological features and spintronic functionalities. In contrast to skyrmions, the generation of antiskyrmions relies on tunning both the magnitude and direction of the external magnetic field. Here, it is reported that antiskyrmions can be efficiently created via quenching and robustly persist at zero field in the Fe Ni Pd P magnet with the S -symmetry. It is demonstrated that well-ordered antiskyrmions form in a square lattice in a confining micrometer-scale square geometry, while the antiskyrmion lattice distorts in triangular, circular, or rotated-square geometry; the distortion depends on the relative configuration between sample edges and the two q-vectors arising from the anisotropic Dzyaloshinskii-Moriya interaction, in good agreement with micromagnetic simulations. It is also characterized transformations from antiskyrmions to skyrmions and nontopological bubbles at different directions and values of external field. These results demonstrate a roadmap for generating and controlling antiskyrmions in a confining geometry.

摘要

磁性斯格明子和反斯格明子因其拓扑特性和自旋电子功能而备受关注。与斯格明子不同,反斯格明子的产生依赖于调节外部磁场的大小和方向。在此,据报道,反斯格明子可以通过淬火有效地产生,并在具有S对称性的Fe Ni Pd P磁体中在零场下稳定存在。结果表明,在限制微米尺度的方形几何结构中,有序的反斯格明子形成方形晶格,而反斯格明子晶格在三角形、圆形或旋转方形几何结构中发生畸变;这种畸变取决于样品边缘与由各向异性的Dzyaloshinskii-Moriya相互作用产生的两个q矢量之间的相对构型,这与微磁模拟结果高度吻合。研究还表征了在不同方向和外部场值下反斯格明子向斯格明子和非拓扑泡的转变。这些结果展示了在限制几何结构中产生和控制反斯格明子的路线图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa38/9534945/43c2820d2ba0/ADVS-9-2202950-g003.jpg

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