论文标题

2020 Skyrmionics路线图

The 2020 Skyrmionics Roadmap

论文作者

Back, C., Cros, V., Ebert, H., Everschor-Sitte, K., Fert, A., Garst, M., Ma, Tianping, Mankovsky, S., Monchesky, T. L., Mostovoy, M., Nagaosa, N., Parkin, S. S. P., Pfleiderer, C., Reyren, N., Rosch, A., Taguchi, Y., Tokura, Y., von Bergmann, K., Zang, Jiadong

论文摘要

凝结物质系统中非平凡拓扑绕组的概念代表了当今的理论和实验研究的主要领域。磁性材料提供了一个多功能平台,特别适合探索真实空间中的拓扑旋转孤子,例如天空。首先在非中心构成材料中鉴定出来的材料系统的快速生长动物学托管天空和相关的拓扑旋转孤子包括散装化合物,表面,薄膜,异质结构,纳米 - 奈诺 - 奈诺 - 奈诺河和纳米点。这强调了从基本问题到磁性领域之间思想之间的思想交流所驱动的,从传统上独立追求的磁性领域之间的思想交流所驱动的巨大突破的非凡潜力。 Skyrmionics Roadmap对目前的最新状态以及目前正在进行的各种研究方向和策略进行了审查。例如,这些是由于在存在非平凡拓扑绕组的存在下鉴定了天际和相关纹理的基本结构特性,成核和ni灭的过程和nih灭的过程,这是一种非常有效的耦合,与微型电流密度的旋转旋转扭矩产生旋转扭矩的旋转电流非常有效,并且能力范围和良好的功能良好的旋转型号和良好的旋转型号。

The notion of non-trivial topological winding in condensed matter systems represents a major area of present-day theoretical and experimental research. Magnetic materials offer a versatile platform that is particularly amenable for the exploration of topological spin solitons in real space such as skyrmions. First identified in non-centrosymmetric bulk materials, the rapidly growing zoology of materials systems hosting skyrmions and related topological spin solitons includes bulk compounds, surfaces, thin films, heterostructures, nano-wires and nano-dots. This underscores an exceptional potential for major breakthroughs ranging from fundamental questions to applications as driven by an interdisciplinary exchange of ideas between areas in magnetism which traditionally have been pursued rather independently. The skyrmionics roadmap provides a review of the present state of the art and the wide range of research directions and strategies currently under way. These are, for instance, motivated by the identification of the fundamental structural properties of skyrmions and related textures, processes of nucleation and annihilation in the presence of non-trivial topological winding, an exceptionally efficient coupling to spin currents generating spin transfer torques at tiny current densities, as well as the capability to purpose-design broad-band spin dynamic and logic devices.

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