论文标题

Skyrmion晶格中新兴Landau级别的拓扑镁带结构

Topological magnon band structure of emergent Landau levels in a skyrmion lattice

论文作者

Weber, T., Fobes, D. M., Waizner, J., Steffens, P., Tucker, G. S., Böhm, M., Beddrich, L., Franz, C., Gabold, H., Bewley, R., Voneshen, D., Skoulatos, M., Georgii, R., Ehlers, G., Bauer, A., Pfleiderer, C., Böni, P., Janoschek, M., Garst, M.

论文摘要

跨拓扑非平凡的磁性跨度旋转激发的运动表现出类似于洛伦兹力对轨道磁场中电动颗粒的影响的偏转。我们使用了极化的非弹性中子散射来研究在锰硅化锰的晶格中镁(即玻体集体自旋激发)的繁殖。对于垂直于天空管的波矢量,磁化光谱与形成细微间距的新兴兰道水平是一致的,这些磁场是虚拟磁场的特征,用于说明天空晶格的非平凡拓扑绕组。这提供了互惠空间中拓扑镁带结构的证据,这是由磁性的非平凡的真实空间拓扑结构出现的。

The motion of a spin excitation across topologically non-trivial magnetic order exhibits a deflection that is analogous to the effect of the Lorentz force on an electrically charged particle in an orbital magnetic field. We used polarized inelastic neutron scattering to investigate the propagation of magnons (i.e., bosonic collective spin excitations) in a lattice of skyrmion tubes in manganese silicide. For wave vectors perpendicular to the skyrmion tubes, the magnon spectra are consistent with the formation of finely spaced emergent Landau levels that are characteristic of the fictitious magnetic field used to account for the nontrivial topological winding of the skyrmion lattice. This provides evidence of a topological magnon band structure in reciprocal space, which is borne out of the nontrivial real-space topology of a magnetic order.

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