空中骑兵
凝聚态物理
上部结构
铁磁性
范德瓦尔斯力
材料科学
电子衍射
结晶学
点反射
衍射
物理
化学
光学
分子
量子力学
热力学
作者
Rana Saha,H. L. Meyerheim,Börge Göbel,Binoy Krishna Hazra,Hakan Deniz,K. Mohseni,V. N. Antonov,A. Ernst,D. A. Knyazev,Amilcar Bedoya‐Pinto,Ingrid Mertig,S. Parkin
标识
DOI:10.1038/s41467-022-31319-y
摘要
Abstract Transition-metal dichalcogenides intercalated with 3 d -transition metals within the van der Waals (vdW) gaps have been the focus of intense investigations owing to their fascinating structural and magnetic properties. At certain concentrations the intercalated atoms form ordered superstructures that exhibit ferromagnetic or anti-ferromagnetic ordering. Here we show that the self-intercalated compound Cr 1+δ Te 2 with δ ≈ 0.3 exhibits a new, so far unseen, three-dimensionally ordered (2×2×2) superstructure. Furthermore, high resolution X-ray diffraction reveals that there is an asymmetric occupation of the two inequivalent vdW gaps in the unit cell. The structure thus lacks inversion symmetry, which, thereby, allows for chiral non-collinear magnetic nanostructures. Indeed, Néel-type skyrmions are directly observed using Lorentz transmission electron microscopy. The skyrmions are stable within the accessible temperature range (100–200 K) as well as in zero magnetic field. The diameter of the Néel skyrmions increases with lamella thickness and varies with applied magnetic field, indicating the role of long-range dipole fields. Our studies show that self-intercalation in vdW materials is a novel route to the formation of synthetic non-collinear spin textures.
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