凝聚态物理
空中骑兵
铁磁性
自旋电子学
偶极子
各向异性
磁化
自旋(空气动力学)
磁各向异性
物理
材料科学
铁磁性
磁场
光学
量子力学
热力学
作者
Michael Heigl,Sabri Koraltan,Marek Vaňatka,Robert Kraft,Claas Abert,Christoph Vogler,Anna Semisalova,Ping Che,Aladin Ullrich,Timo Torsten Schmidt,Julian Hintermayr,Dirk Grundler,M. Farle,Michal Urbánek,Dieter Suess,M. Albrecht
标识
DOI:10.1038/s41467-021-22600-7
摘要
Skyrmions and antiskyrmions are topologically protected spin structures with opposite topological charge. Particularly in coexisting phases, these two types of magnetic quasi-particles may show fascinating physics and potential for spintronic devices. While skyrmions are observed in a wide range of materials, until now antiskyrmions were exclusive to materials with D2d symmetry. In this work, we show first and second-order antiskyrmions stabilized by magnetic dipole-dipole interaction in Fe/Gd-based multilayers. We modify the magnetic properties of the multilayers by Ir insertion layers. Using Lorentz transmission electron microscopy imaging, we observe coexisting antiskyrmions, Bloch skyrmions, and type-2 bubbles and determine the range of material properties and magnetic fields where the different spin objects form and dissipate. We perform micromagnetic simulations to obtain more insight into the studied system and conclude that the reduction of saturation magnetization and uniaxial anisotropy leads to the existence of this zoo of different spin objects and that they are primarily stabilized by dipolar interaction.
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