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扩展斯格明子弦中拓扑缺陷的实空间观测

Real-Space Observation of Topological Defects in Extended Skyrmion-Strings.

作者信息

Yu Xiuzhen, Masell Jan, Yasin Fehmi S, Karube Kosuke, Kanazawa Naoya, Nakajima Kiyomi, Nagai Takuro, Kimoto Koji, Koshibae Wataru, Taguchi Yasujiro, Nagaosa Naoto, Tokura Yoshinori

机构信息

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

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

出版信息

Nano Lett. 2020 Oct 14;20(10):7313-7320. doi: 10.1021/acs.nanolett.0c02708. Epub 2020 Oct 5.

Abstract

Exotic topological spin textures such as emergent magnetic monopole/anti-monopoles (hedgehog/anti-hedgehog) in the metastable extended skyrmion-strings attract much attention to the fundamental physics owing to their novel electromagnetic properties. However, the direct imaging of such spin textures is lacking. Here, we report the real-space observation of emergent magnetic monopoles involved in extended skyrmion-strings by Lorentz transmission electron microscopy (TEM) in combination with micromagnetic simulations. The in-plane extended skyrmion-strings are observed directly by Lorentz TEM to accompany the topological hedgehog-like defect, where the skyrmion-string terminates or merges with another skyrmion-string, as well as the surface-related defects where skyrmion-string bends 90° and ends on the surface. We also demonstrate the transformation of a metastabilized lattice of out-of-plane short skyrmion-strings into an in-plane array of extended skyrmion-strings by tuning the magnitude of oblique fields in a room-temperature helimagnet, revealing the stability of such topological spin textures and the possibility to control them.

摘要

诸如亚稳扩展斯格明子弦中出现的磁单极子/反磁单极子(刺猬/反刺猬)等奇特的拓扑自旋纹理,因其新颖的电磁特性而在基础物理学中备受关注。然而,此类自旋纹理的直接成像尚付阙如。在此,我们报告通过洛伦兹透射电子显微镜(TEM)结合微磁模拟对扩展斯格明子弦中出现的磁单极子进行实空间观测。通过洛伦兹TEM直接观测到面内扩展斯格明子弦伴随着拓扑刺猬状缺陷,即斯格明子弦终止或与另一个斯格明子弦合并的位置,以及斯格明子弦弯曲90°并在表面终止的与表面相关的缺陷。我们还展示了通过在室温螺旋磁体中调节倾斜场的大小,将面外短斯格明子弦的亚稳晶格转变为面内扩展斯格明子弦阵列,揭示了此类拓扑自旋纹理的稳定性及其可控性。

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