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Tailoring the topology of an artificial magnetic skyrmion

机译:量身定制人造天sky的拓扑

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摘要

Despite theoretical predictions, it remains an experimental challenge to realize an artificial magnetic skyrmion whose topology can be well controlled and tailored so that its topological effect can be revealed explicitly in a deformation of the spin textures. Here we report epitaxial magnetic thin films in which an artificial skyrmion is created by embedding a magnetic vortex into an out-of-plane aligned spin environment. By changing the relative orientation between the central vortex core polarity and the surrounding out-of-plane spins, we are able to control and tailor the system between two skyrmion topological states. An in-plane magnetic field is used to annihilate the skyrmion core by converting the central vortex state into a single domain state. Our result shows distinct annihilation behaviour of the skyrmion core for the two different skyrmion states, suggesting a topological effect of the magnetic skyrmions in the core annihilation process.
机译:尽管有理论上的预测,但要实现一种可以很好地控制和调整其拓扑结构以使其在自旋纹理变形中显露其拓扑效应的人造磁sky虫,仍然是一项实验挑战。在这里,我们报告外延磁性薄膜,其中通过将磁涡旋嵌入面外对齐的自旋环境中来创建人造天rm。通过更改中心涡旋核心极性和周围的平面外自旋之间的相对方向,我们能够控制和调整两种天体离子拓扑状态之间的系统。平面内磁场通过将中心涡旋状态转换为单畴状态来消灭天sky子核心。我们的结果表明,在两种不同的Skyrmion状态下,Skyrmion芯具有独特的an灭行为,这表明磁性Skyrmion在芯an灭过程中具有拓扑效应。

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