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首页> 外文期刊>ACS nano >Direct Demonstration of Topological Stability of Magnetic Skyrmions via Topology Manipulation
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Direct Demonstration of Topological Stability of Magnetic Skyrmions via Topology Manipulation

机译:通过拓扑操纵直接示范磁性臭虫的拓扑稳定性

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摘要

Topological protection precludes a continuous deformation between topologically inequivalent configurations in a continuum. Motivated by this concept, magnetic skyrmions, topologically nontrivial spin textures, are expected to exhibit topological stability, thereby offering a prospect as a nanometer-scale nonvolatile information carrier. In real materials, however, atomic spins are configured as not continuous but discrete distributions, which raises a fundamental question if the topological stability is indeed preserved for real magnetic skyrmions. Answering this question necessitates a direct comparison between topologically nontrivial and trivial spin textures, but the direct comparison in one sample under the same magnetic fields has been challenging. Here we report how to selectively achieve either a skyrmion state or a topologically trivial bubble state in a single specimen and thereby experimentally show how robust the skyrmion structure is in comparison with the bubbles. We demonstrate that topologically nontrivial magnetic skyrmions show longer lifetimes than trivial bubble structures, evidencing the topological stability in a real discrete system. Our work corroborates the physical importance of the topology in the magnetic materials, which has hitherto been suggested by mathematical arguments, providing an important step toward ever-dense and more-stable magnetic devices.
机译:拓扑保护绝排不能在连续体中拓扑不当配置之间的连续变形。受到这种概念的动机,磁性臭氧,拓扑非学生旋转纹理预计将表现出拓扑稳定性,从而提供作为纳米级非易失性信息载体的探险。然而,在真实的材料中,原子旋转被配置为不连续但离散的分布,如果确实保留了真实的磁性臭鼬的拓扑稳定性,则引发基本问题。回答这个问题需要直接比较拓扑非动力和琐碎的旋转纹理,但在同一磁场下的一个样品中的直接比较一直在具有挑战性。在这里,我们报告了如何在单个标本中选择性地实现斯基云原状态或拓扑普通气泡状态,从而实验表明斯基云原结构与气泡相比的稳健程度。我们证明了拓扑非竞争磁性噬菌体的寿命比普通气泡结构更长,证明了实际离散系统中的拓扑稳定性。我们的工作证实了磁性材料中拓扑的拓扑物理重要性,该磁性材料已经提出了数学争论,为致密致密和更稳定的磁性装置提供了重要的一步。

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