论文标题
单层铁磁铁中Moiré少坚元的可视化
Visualization of moiré magnons in monolayer ferromagnet
论文作者
论文摘要
二维磁性材料为探索与自旋波动相关的集体多体激发提供了理想的平台。特别是,以可控的方式探索,操纵和最终在二维范德华磁铁中设计宏伟激发应该是可行的。在这里,我们证明了MoiréMagnon激发的出现,这是源于单层Crbr $ _3 $中的自旋兴奋剂的相互作用,以及源自与基础底物的晶格不匹配的Moiré模式。通过非弹性准粒子干扰进一步证实了莫伊木木的存在,显示了与莫伊尔长度尺度相关的分散模式的外观。我们的结果在Moiré少木元素的分散体的真实空间中提供了直接的可视化,证明了Moiré模式在产生新出现的多体激发时的多功能性。
Two-dimensional magnetic materials provide an ideal platform to explore collective many-body excitations associated with spin fluctuations. In particular, it should be feasible to explore, manipulate and ultimately design magnonic excitations in two-dimensional van der Waals magnets in a controllable way. Here we demonstrate the emergence of moiré magnon excitations, stemming from the interplay of spin-excitations in monolayer CrBr$_3$ and the moiré pattern stemming from the lattice mismatch with the underlying substrate. The existence of moiré magnons is further confirmed via inelastic quasiparticle interference, showing the appearance of a dispersion pattern correlated with the moiré length scale. Our results provide a direct visualization in real-space of the dispersion of moiré magnons, demonstrating the versatility of moiré patterns in creating emerging many-body excitations.