空中骑兵
自旋电子学
磁铁
范德瓦尔斯力
凝聚态物理
偶极子
激发
物理
自旋(空气动力学)
拓扑(电路)
洛伦兹变换
材料科学
拓扑绝缘体
领域(数学)
铁磁性
磁场
磁偶极-偶极相互作用
旋转泵
拓扑缺陷
自由度(物理和化学)
作者
Y Q Hu,Donghai Yang,Xuange Hu,Huai Zhang,Jiangteng Guo,Ying Deng,Zhipeng Hou,Fengshan Zheng,Fu X
摘要
ABSTRACT Topological magnetic solitons, such as skyrmions, exhibit topological protection and emergent electrodynamics that make them compelling for both fundamental research and spintronic applications. Beyond the canonical skyrmion, higher‐order and composite textures, such as skyrmion bag, offer arbitrary topological charges and internal morphology that critically governs their energetics and excitation dynamics. However, despite numerous theoretical proposals, experimental access to distinct skyrmion‐bag morphologies has so far been scarce and mainly confined to Dzyaloshinskii‐Moriya‐interaction (DMI)‐based systems. Here, we demonstrate a broad spectrum of skyrmion bags by using femtosecond‐laser excitation in a centrosymmetric van der Waals magnet Cr 1.6 Ti 0.03 Te 2 , referred to as dipolar skyrmion bags. The observed skyrmion bags are composed of closed domain‐wall loops with different circularities and varying loop numbers, as well as their corresponding type‐II counterparts, far beyond the limited skyrmion bags in DMI systems. Combining Lorentz transmission electron microscopy with micromagnetic simulations, we investigate in details their stability, circularity‐dependent field evolution, and distinct annihilation channels. This work substantially expands the experimentally accessible family of topological spin textures and pave the way toward multi‐state, reconfigurable spintronic functionalities based on dipolar skyrmion bags.
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