Meijer Mariëlle J, Lucassen Juriaan, Duine Rembert A, Swagten Henk J M, Koopmans Bert, Lavrijsen Reinoud, Guimarães Marcos H D
Department of Applied Physics, Eindhoven University of Technology, P.O. Box 513, 5600 MB, Eindhoven, The Netherlands.
Institute for Theoretical Physics, Utrecht University, Leuvenlaan 4, 3584 CE, Utrecht, The Netherlands.
Nano Lett. 2020 Dec 9;20(12):8563-8568. doi: 10.1021/acs.nanolett.0c03111. Epub 2020 Nov 25.
Topologically protected magnetic structures provide a robust platform for low power consumption devices for computation and data storage. Examples of these structures are skyrmions, chiral domain walls, and spin spirals. Here, we use scanning electron microscopy with polarization analysis to unveil the presence of chiral counterclockwise Néel spin spirals at the surface of a bulk van der Waals ferromagnet FeGeTe (FGT) at zero magnetic field. These Néel spin spirals survive up to FGT's Curie temperature of = 220 K, with little change in the periodicity = 300 nm of the spin spiral throughout the studied temperature range. The formation of a spin spiral showing counterclockwise rotation strongly suggests the presence of a positive Dzyaloshinskii-Moriya interaction in FGT, which provides the first steps towards the understanding of the magnetic structure of FGT. Our results additionally pave the way for chiral magnetism in van der Waals materials and their heterostructures.
拓扑保护的磁性结构为用于计算和数据存储的低功耗设备提供了一个强大的平台。这些结构的例子包括斯格明子、手性畴壁和自旋螺旋。在这里,我们使用带有偏振分析的扫描电子显微镜来揭示在零磁场下块状范德华铁磁体FeGeTe(FGT)表面存在手性逆时针奈尔自旋螺旋。这些奈尔自旋螺旋在高达FGT的居里温度 = 220 K时仍然存在,在整个研究温度范围内自旋螺旋的周期 = 300 nm几乎没有变化。显示逆时针旋转的自旋螺旋的形成强烈表明FGT中存在正的Dzyaloshinskii-Moriya相互作用,这为理解FGT的磁性结构迈出了第一步。我们的结果还为范德华材料及其异质结构中的手性磁性铺平了道路。