Ran Kejing, Liu Yizhou, Jin Haonan, Shangguan Yanyan, Guang Yao, Wen Jinsheng, Yu Guoqiang, van der Laan Gerrit, Hesjedal Thorsten, Zhang Shilei
School of Physical Science and Technology, ShanghaiTech University, Shanghai 200031, China.
ShanghaiTech Laboratory for Topological Physics, ShanghaiTech University, Shanghai 200031, China.
Nano Lett. 2022 May 11;22(9):3737-3743. doi: 10.1021/acs.nanolett.2c00689. Epub 2022 Apr 22.
A major challenge in topological magnetism lies in the three-dimensional (3D) exploration of their magnetic textures. A recent focus has been the question of how 2D skyrmion sheets vertically stack to form distinct types of 3D topological strings. Being able to manipulate the vertical coupling should therefore provide a route to the engineering of topological states. Here, we present a new type of axially bound magnetic skyrmion string state in which the strings in two distinct materials are glued together across their interface. With quasi-tomographic resonant elastic X-ray scattering, the 3D skyrmion profiles before and after their binding across the interface were unambiguously determined and compared. Their attractive binding is accompanied by repulsive twisting; i.e., the coupled skyrmions mutually affect each other via a compensating twisting. This state exists in chiral magnet-magnetic thin film heterostructures, providing a new arena for the engineering of 3D topological phases.
拓扑磁学中的一个主要挑战在于对其磁纹理进行三维(3D)探索。最近的一个关注点是二维斯格明子片如何垂直堆叠形成不同类型的三维拓扑弦的问题。因此,能够控制垂直耦合应该为拓扑态的工程设计提供一条途径。在这里,我们展示了一种新型的轴向束缚磁斯格明子弦态,其中两种不同材料中的弦在它们的界面处胶合在一起。通过准断层扫描共振弹性X射线散射,明确确定并比较了界面结合前后的三维斯格明子轮廓。它们的吸引性结合伴随着排斥性扭曲;即,耦合的斯格明子通过补偿性扭曲相互影响。这种状态存在于手性磁体 - 磁性薄膜异质结构中,为三维拓扑相的工程设计提供了一个新领域。