论文标题

山谷量量子异常大厅状态在AB堆放的Mote2/WSE2双层

Valley-coherent quantum anomalous Hall state in AB-stacked MoTe2/WSe2 bilayers

论文作者

Tao, Zui, Shen, Bowen, Jiang, Shengwei, Li, Tingxin, Li, Lizhong, Ma, Liguo, Zhao, Wenjin, Hu, Jenny, Pistunova, Kateryna, Watanabe, Kenji, Taniguchi, Takashi, Heinz, Tony F., Mak, Kin Fai, Shan, Jie

论文摘要

Moiré材料为相关和拓扑量子现象提供了肥沃的地面。其中,即使在零磁场下,量子异常的效应(QAH)效应是量子的量子,是材料的内在拓扑特性的直接表现,也是低功率电子应用的吸引人属性。在石墨烯和过渡金属二北元(TMD)Moiré材料中都观察到了QAH效应。人们认为它是由狭窄的莫伊尔带的相互作用驱动的山谷极化引起的。在这里,我们出人意料地表明,新发现的QAH州在AB堆放的Mote2/WSE2MoiréBiLayers中不是谷极化的,而是山谷 - 固定的。层和螺旋分辨的光谱测量表明,QAH基态具有在两个TMD层中对齐(抗对准)的自发旋转(山谷)极化。此外,两层的平面外自旋极化的饱和仅发生在高磁场下,从而支持倾斜的自旋纹理。我们的结果呼吁采用QAH效应的新机制,并突出了具有强电子相关性的TMDMoiré材料的潜力和外来拓扑状态的自旋轨道相互作用。

Moiré materials provide fertile ground for the correlated and topological quantum phenomena. Among them, the quantum anomalous Hall (QAH) effect, in which the Hall resistance is quantized even under zero magnetic field, is a direct manifestation of the intrinsic topological properties of a material and an appealing attribute for low-power electronics applications. The QAH effect has been observed in both graphene and transition metal dichalcogenide (TMD) moiré materials. It is thought to arise from the interaction-driven valley polarization of the narrow moiré bands. Here, we show surprisingly that the newly discovered QAH state in AB-stacked MoTe2/WSe2 moiré bilayers is not valley-polarized but valley-coherent. The layer- and helicity-resolved optical spectroscopy measurement reveals that the QAH ground state possesses spontaneous spin (valley) polarization aligned (anti-aligned) in two TMD layers. In addition, saturation of the out-of-plane spin polarization in both layers occurs only under high magnetic fields, supporting a canted spin texture. Our results call for a new mechanism for the QAH effect and highlight the potential of TMD moiré materials with strong electronic correlations and spin-orbit interactions for exotic topological states.

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