论文标题
2D MNBI2TE 4中的磁化纹理的手性通道网络4
Chiral channel network from magnetization textures in 2D MnBi2Te4
论文作者
论文摘要
当原子上薄的范德华(VDW)磁体形成带有磁性基板的长周期莫伊尔图案时,层间磁耦合对原子登记的敏感依赖性可能会导致Moiré定义的二维(2D)磁体中的磁化质地。最近发现的2D磁性绝缘子(例如MNBI2TE4)导致了有趣的可能性,可以探索这种磁化纹理与拓扑表面状态的相互作用,我们在这里使用为2D MNBI2TE4建立的最小模型探索。交换间隙跨磁化域壁的符号翻转可导致每个表面上的单个间隙手性通道。在周期性的磁化纹理中,这种域壁上的手性自旋通道形成网络和超晶格迷你吧出现。我们发现,在具有封闭域壁几何形状的磁化纹理中,形成的超级晶格迷你搭手是一种散发式零圆锥锥体,具有当前循环中的轨道磁化,在手性通道的密切回路中,而在带有开放式域壁的磁化纹理中,无需间隔的迷你 - 迪拉克锥。小型蓝och状态具有自旋和局部电流密度的空间纹理,这是域壁上自旋摩托杆锁定的手性通道的明显表现。结果提出了一个新的平台,用于设计自旋和电流通过对Spintronic设备的磁化域操作的流动。
When atomically thin van der Waals (vdW) magnet forms long-period moiré pattern with a magnetic substrate, the sensitive dependence of interlayer magnetic coupling on the atomic registries can lead to moiré defined magnetization textures in the two-dimensional (2D) magnets. The recent discovery of 2D magnetic topological insulators such as MnBi2Te4 leads to the interesting possibility to explore the interplay of such magnetization textures with the topological surface states, which we explore here with a minimal model established for 2D MnBi2Te4. The sign flip of the exchange gap across a magnetization domain wall gives rise to a single in-gap chiral channel on each surface. In the periodic magnetization textures, such chiral spin channels at the domain walls couple to form a network and superlattice minibands emerge. We find that in magnetization textures with closed domain wall geometries, the formed superlattice miniband is a gapped Dirac cone featuring orbital magnetization from the current circulation in the close loops of chiral channels, while in magnetization textures with open domain wall geometries, gapless mini-Dirac cone is found instead. The miniband Bloch states feature a spatial texture of spin and local current density, which are clear manifestation of the spin-momentum locked chiral channels at the domain walls. The results suggest a new platform to engineer spin and current flows through the manipulation of magnetization domains for spintronic devices.