论文标题
磁性Moiré超晶格中非共线性自旋纹理的证据
Evidence of Noncollinear Spin Texture in Magnetic Moiré Superlattices
论文作者
论文摘要
与Moiré电子产品平行的MoiréAmagitism,导致了新型相关和拓扑电子状态,作为在扭曲的磁性二维(2D)晶体中设计和控制外来磁相的新场地。在这里,我们报告了2D扭曲的双重双层(TDB)磁铁三碘化物(CRI $ _3 $)中非连续性旋转纹理的直接证据。使用TDB CRI $ _3 $中的磁光谱谱图,我们揭示了存在净磁化的存在,这是出乎意料的,这些磁化强度出乎意料的是具有补偿磁化的组成的抗磁性双层,而非连续性旋转的出现起源于Moiré交换coupling coupling copling诱导的旋转挫败感。在探索扭转角度依赖性时,我们证明了这两个功能都存在于TDB CRI $ _3 $中,扭曲角度从0.5 $^o $到5 $^o $,但在1.1 $^o $ $ tdb cri $ _3 $中最为突出。为了关注1.1 $^o $ $ TDB CRI $ _3 $的温度依赖性,由于Moiré诱发的挫败感,我们解决了净磁力化开始温度的急剧抑制和非共线旋转的显着软化。我们的结果证明了Moiré超级晶格在引入天然2D磁体中不存在的新型磁性现象中的力量。
Moiré magnetism, parallel with moiré electronics that has led to novel correlated and topological electronic states, emerges as a new venue to design and control exotic magnetic phases in twisted magnetic two-dimensional(2D) crystals. Here, we report direct evidence of noncollinear spin texture in 2D twisted double bilayer (tDB) magnet chromium triiodide (CrI$_3$). Using magneto-optical spectroscopy in tDB CrI$_3$, we revealed the presence of a net magnetization, unexpected from the composing antiferromagnetic bilayers with compensated magnetizations, and the emergence of noncollinear spins, originated from the moiré exchange coupling-induced spin frustrations. Exploring the twist angle dependence, we demonstrated that both features are present in tDB CrI$_3$ with twist angles from 0.5$^o$ to 5$^o$, but are most prominent in the 1.1$^o$ tDB CrI$_3$. Focusing on the temperature dependence of the 1.1$^o$ tDB CrI$_3$, we resolved the dramatic suppression in the net magnetization onset temperature and the significant softening of noncollinear spins, as a result of the moiré induced frustration. Our results demonstrate the power of moiré superlattices in introducing novel magnetic phenomena that are absent in natural 2D magnets.