论文标题

基于CRI3的VDW异质结构中的Magnon Valley Hall效应

Magnon valley Hall effect in CrI3-based vdW heterostructures

论文作者

Hidalgo-Sacoto, R., Gonzalez, R. I., Vogel, E. E., Allende, S., Mella, Jose D., Cardenas, C., Troncoso, Roberto E., Munoz, F.

论文摘要

研究了二维(2D)范德华(VDW)Ferromagnet CRI3中的宏伟激发。我们发现,块状镁具有非平凡的拓扑结构,而无需Dzyaloshinskii-Moriya(DM)相互作用。这在VDW异质结构中显示,由单层CRI3在不同的2D材料之上,例如Mote2,HFS2和WSE2组成。我们从数值上发现,所提出的底物在CRI3子系统的每个司板上都大大修改了平面外磁各向异性。诱导的交错各向异性与适当的带倒置结合,导致了镁光谱的拓扑间隙的打开。由于该间隙在布里渊区的K+和K点是非对称的,因此可以在驱动力下产生这两个山谷之间的镁种群的不平衡。这种现象与所谓的山谷大厅效应(VHE)相比,因此被称为Magnon Valley Hall效应(MVHE)。在对温度梯度的线性响应中,我们通过评估镁热室效应的温度依赖性来量化这种效果。这些发现在研究磁蛋白的研究中,除了旋转外,还增加了山谷的自由度,从而开辟了不同的途径。

Magnonic excitations in the two-dimensional (2D) van der Waals (vdW) ferromagnet CrI3 are studied. We find that bulk magnons exhibit a non-trivial topological band structure without the need for Dzyaloshinskii-Moriya (DM) interaction. This is shown in vdW heterostructures, consisting of single-layer CrI3 on top of different 2D materials as MoTe2, HfS2 and WSe2. We find numerically that the proposed substrates modify substantially the out-of-plane magnetic anisotropy on each sublattice of the CrI3 subsystem. The induced staggered anisotropy, combined with a proper band inversion, leads to the opening of a topological gap of the magnon spectrum. Since the gap is opened non-symmetrically at the K+ and K- points of the Brillouin zone, an imbalance in the magnon population between these two valleys can be created under a driving force. This phenomenon is in close analogy to the so-called valley Hall effect (VHE), and thus termed as magnon valley Hall effect (MVHE). In linear response to a temperature gradient we quantify this effect by the evaluation of the temperature-dependence of the magnon thermal Hall effect. These findings open a different avenue by adding the valley degrees of freedom besides the spin, in the study of magnons.

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