School of Physical Science and Technology, ShanghaiTech University, Shanghai 200031, China.
ShanghaiTech Laboratory for Topological Physics, ShanghaiTech University, Shanghai 200031, China.
Nano Lett. 2023 Jun 14;23(11):5164-5170. doi: 10.1021/acs.nanolett.3c01117. Epub 2023 Jun 1.
Topological defects are fundamental concepts in physics, but little is known about the transition between distinct types across different dimensionalities. In topological magnetism, as in field theory, the transition between 1D strings and 0D monopoles is a key process whose observation has remained elusive. Here, we introduce a novel mechanism that allows for the controlled stabilization of emergent monopoles and show that magnetic skyrmion strings can be folded into monopoles. Conversely, they act as seeds out of which the entire string structure can unfold, containing its complete information. In chiral magnets, this process can be observed by resonant elastic X-ray scattering when the objects are in proximity to a polarized ferromagnet, whereby a pure monopole lattice is emerging on the surface. Our experimental proof of the reversible evolution from monopole to string sheds new light on topological defects and establishes the emergent monopole lattice as a new 3D topological phase.
拓扑缺陷是物理学中的基本概念,但对于不同维度之间不同类型的拓扑缺陷之间的转变知之甚少。在拓扑磁学中,与场论一样,1D 弦和 0D 单极子之间的转变是一个关键过程,但其观测一直难以实现。在这里,我们引入了一种新的机制,可以控制稳定出现的单极子,并表明磁 skyrmion 弦可以折叠成单极子。相反,它们可以作为种子,整个字符串结构可以从种子中展开,包含其完整的信息。在手性磁体中,当物体接近极化铁磁体时,通过共振弹性 X 射线散射可以观察到这个过程,此时表面上会出现纯单极子晶格。我们对从单极子到弦的可逆演化的实验证明为拓扑缺陷提供了新的视角,并确立了新兴的单极子晶格作为一种新的 3D 拓扑相。