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Direct experimental determination of the topological winding number of skyrmions in Cu2OSeO3

机译:直接实验确定Cu2OSeO3中Skyrmion的拓扑缠绕数

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摘要

The mathematical concept of topology has brought about significant advantages that allow for a fundamental understanding of the underlying physics of a system. In magnetism, the topology of spin order manifests itself in the topological winding number which plays a pivotal role for the determination of the emergent properties of a system. However, the direct experimental determination of the topological winding number of a magnetically ordered system remains elusive. Here, we present a direct relationship between the topological winding number of the spin texture and the polarized resonant X-ray scattering process. This relationship provides a one-to-one correspondence between the measured scattering signal and the winding number. We demonstrate that the exact topological quantities of the skyrmion material Cu2OSeO3 can be directly experimentally determined this way. This technique has the potential to be applicable to a wide range of materials, allowing for a direct determination of their topological properties.
机译:拓扑的数学概念带来了显着的优点,这些优点使您可以对系统的基本物理原理有基本的了解。在磁学中,自旋顺序的拓扑结构以拓扑绕组数形式表现出来,而拓扑绕组数对确定系统的出现特性起着举足轻重的作用。但是,直接实验确定磁有序系统的拓扑绕组数仍然很困难。在这里,我们提出了自旋纹理的拓扑缠绕数与极化共振X射线散射过程之间的直接关系。该关系提供了所测得的散射信号与绕组数之间的一一对应关系。我们证明,可以通过实验直接确定天敌离子材料Cu2OSeO3的确切拓扑量。该技术可能适用于多种材料,从而可以直接确定其拓扑特性。

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