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Mixed topological semimetals driven by orbital complexity in two-dimensional ferromagnets

机译:二维铁磁体中的轨道复杂性驱动的混合拓扑半球

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The concepts of Weyl fermions and topological semimetals emerging in three-dimensional momentum space are extensively explored owing to the vast variety of exotic properties that they give rise to. On the other hand, very little is known about semimetallic states emerging in two-dimensional magnetic materials, which present the foundation for both present and future information technology. Here, we demonstrate that including the magnetization direction into the topological analysis allows for a natural classification of topological semimetallic states that manifest in two-dimensional ferromagnets as a result of the interplay between spin-orbit and exchange interactions. We explore the emergence and stability of such mixed topological semimetals in realistic materials, and point out the perspectives of mixed topological states for current-induced orbital magnetism and current-induced domain wall motion. Our findings pave the way to understanding, engineering and utilizing topological semimetallic states in two-dimensional spin-orbit ferromagnets.
机译:由于它们引起的各种异国特征,广泛探讨了三维动量空间中出现了三维动量空间中出现的妇女遗传们和拓扑半球的概念。另一方面,关于二维磁性材料出现的半金属状态非常少的,这是目前和未来信息技术的基础。这里,我们证明包括磁化方向进入拓扑分析,允许由于旋转轨道和交换相互作用之间的相互作用而在二维铁磁体中显现的拓扑半机状态的自然分类。我们探讨了现实材料中这种混合拓扑半态的出现和稳定性,并指出了对电流诱导的轨道磁和电流诱导的畴壁运动的混合拓扑状态的视角。我们的调查结果铺平了理解,工程和利用二维旋转轨道铁磁系数的拓扑半机状态。

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