Gao Yang, Yin Qiangwei, Wang Qi, Li Zhuolin, Cai Jianwang, Zhao Tongyun, Lei Hechang, Wang Shouguo, Zhang Ying, Shen Baogen
Beijing National Laboratory for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.
Institute of Advanced Materials, Beijing Normal University, Beijing, 100875, China.
Adv Mater. 2020 Dec;32(48):e2005228. doi: 10.1002/adma.202005228. Epub 2020 Oct 28.
The promise of topologically vortex-like magnetic spin textures hinges on the intriguing physical properties and theories in fundamental research and their distinguished roles as high-efficiency information units in future spintronics. The exploration of such magnetic states with unique spin configurations has never ceased. In this study, the emergence of unconventional (anti)meron chains from a domain wall pair is directly observed at zero field in 2D ferromagnetic Fe GeTe , closely correlated with significant enhancement of the in-plane magnetization and weak van der Waals interactions. The simultaneous appearance of a large topological Hall effect is observed at the same temperature range as that of the abnormal magnetic transition. Moreover, the distinctive features of the (anti)meron chains and their collective dynamic behavior under external fields may provide concrete experimental evidence for the recent theoretical prediction of the magnetic-domain-wall topology and endorse a broader range of possibilities for electronics, spintronics, condensed matter physics, etc.
拓扑涡旋状磁自旋纹理的前景取决于基础研究中引人入胜的物理性质和理论,以及它们作为未来自旋电子学中高效信息单元的独特作用。对具有独特自旋构型的此类磁态的探索从未停止。在本研究中,在二维铁磁体FeGeTe₂的零场下直接观察到由畴壁对产生的非常规(反)默子链,这与面内磁化强度的显著增强和弱范德华相互作用密切相关。在与异常磁转变相同的温度范围内观察到同时出现的大拓扑霍尔效应。此外,(反)默子链的独特特征及其在外部场下的集体动力学行为可能为最近关于磁畴壁拓扑的理论预测提供具体的实验证据,并为电子学、自旋电子学、凝聚态物理等领域带来更广泛的可能性。