Physikalisches Institut, Lehrstuhl für Experimentelle Physik 2, Universität Würzburg, Am Hubland, 97074 Würzburg, Germany.
Peter Grünberg Institut and Institute for Advanced Simulation, Forschungszentrum Jülich und JARA, 52425 Jülich, Germany.
Phys Rev Lett. 2018 May 18;120(20):207202. doi: 10.1103/PhysRevLett.120.207202.
We report the direct observation of a theoretically predicted magnetic ground state in a monolayer Fe on Rh(111), which is referred to as an up-up-down-down (↑↑↓↓) double-row-wise antiferromagnetic spin structure, using spin-polarized scanning tunneling microscopy. This exotic phase, which exists in three orientational domains, is revealed by experiments with magnetic probe tips performed in external magnetic fields. It is shown that a hitherto unconsidered four-spin-three-site beyond-Heisenberg interaction distinctly contributes to the spin coupling of atoms with S≥1 spins. The observation of the ↑↑↓↓ order substantiates the presence of higher-order, in particular, three-site interactions, in thin magnetic films of itinerant magnets.
我们通过自旋极化扫描隧道显微镜直接观察到在 Rh(111)表面单层 Fe 中一种理论上预测的磁基态,该基态被称为双行式反铁磁自旋结构,表现为 ↑↑↓↓。通过在外磁场中使用磁性探针针尖进行的实验,揭示了这种存在于三个取向畴中的奇特相。实验表明,一个迄今尚未考虑的海森堡模型之外的四自旋三体相互作用,对 S≥1 自旋原子的自旋耦合有明显贡献。 ↑↑↓↓序的观测证实了巡游磁体的薄膜中存在高阶相互作用,特别是三体相互作用。