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Symmetry breaking in spin spirals and skyrmions by in-plane and canted magnetic fields

机译:平面内和倾斜磁场使自旋螺旋和天体对称性破裂

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The influence of in-plane and canted magnetic fields on spin spirals and skyrmions in atomic bilayer islands of palladium and iron on an Ir(111) substrate is investigated by scanning tunneling microscopy at low temperatures. It is shown that the spin spiral propagation direction is determined by the island's border which can be explained by equilibrium state calculations on a triangular lattice. We find a different response of spin spirals to in-plane magnetic fields for a propagation direction parallel to the applied field as compared to perpendicular, which originates from their cycloidal nature. As a result, the spin spiral propagation direction may be reorientated by in-plane fields. Furthermore, it is demonstrated that also skyrmions are distorted in canted fields which allows to determine the sense of magnetization rotation as enforced by the interfacial Dzyaloshinskii–Moriya interaction.
机译:通过在低温下扫描隧道显微镜研究平面和倾斜磁场对Ir(111)衬底上的钯和铁原子双层岛中的自旋螺旋和skyrmion的影响。结果表明,自旋螺旋传播的方向是由岛的边界决定的,这可以通过三角晶格上的平衡态计算来解释。我们发现,自旋螺旋对平面磁场的响应与垂直于垂直于施加磁场的传播方向不同,这是由于它们的摆线特性引起的。结果,自旋螺旋传播方向可以通过面内场来重新定向。此外,已证明,在倾斜的场中,天蝎子也变形,这可以确定由界面Dzyaloshinskii-Moriya相互作用增强的磁化旋转感。

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