论文标题
超越天空:替代磁准颗粒的审查和观点
Beyond skyrmions: Review and perspectives of alternative magnetic quasiparticles
论文作者
论文摘要
自十年前的发现以来,磁性天空吸引了巨大的研究兴趣。这些纳米旋转的非平凡的真实空间拓扑导致了从根本上有趣且具有技术相关的后果 - 质地的Skyrmion Hall效应和电子的拓扑厅效应。此外,它在围绕巨大稳定性的铁磁范围内赋予了天空,即使在小尺寸的情况下,这使Skyrmions有抱负者将来成为信息的载体。尽管如此,由于其当前驱动的运动缺点,尚未实现Spintronic设备中的天空的利用。在这篇评论中,我们介绍了超越天空的拓扑旋转纹理领域的最新趋势。这些物体中的大多数可以被视为多个子粒子的组合,例如Bimeron或不同磁性环境中的Skyrmion类似物,例如抗磁磁性天际,以及三维概括,例如希望。我们对替代磁准粒子进行了分类 - 其中一些是实验观察到的,另一些是理论预测的 - 并呈现出该新兴领域的最相关和最吉祥的优势。
Magnetic skyrmions have attracted enormous research interest since their discovery a decade ago. The non-trivial real-space topology of these nano-whirls leads to fundamentally interesting and technologically relevant consequences - the skyrmion Hall effect of the texture and the topological Hall effect of the electrons. Furthermore, it grants skyrmions in a ferromagnetic surrounding great stability even at small sizes, making skyrmions aspirants to become the carriers of information in the future. Still, the utilization of skyrmions in spintronic devices has not been achieved yet, among other reasons, due to shortcomings in their current-driven motion. In this review, we present recent trends in the field of topological spin textures that go beyond skyrmions. The majority of these objects can be considered a combination of multiple subparticles, such as the bimeron, or the skyrmion analogues in different magnetic surroundings, such as antiferromagnetic skyrmions, as well as three-dimensional generalizations, such as hopfions. We classify the alternative magnetic quasiparticles - some of them observed experimentally, others theoretical predictions - and present the most relevant and auspicious advantages of this emerging field.