论文标题

对称依赖性的抗磁磁接近对山谷分裂的影响

Symmetry-dependent antiferromagnetic proximity effects on valley splitting

论文作者

Xu, Chengyang, Kong, Lingxian, Luo, Weidong

论文摘要

通过调整自由程度发现了各种物理现象,其中有自由程度(DOF) - “山谷”。典型的山谷材料的特征在于两个由时间反向对称性(TS)保护的退化山谷状态。这些由山谷DOF索引的状态已被测量并操纵,以用破裂的山谷变性物进行了紧急山谷对抗性物理。为了实现TS破裂导致的山谷分裂,先前的研究主要集中在铁磁(FM)层提供的磁接近效应上。然而,从未系统地研究抗铁磁(AFM)接近对山谷退化的影响。在这项工作中,我们构建了由特定平面内AFM构型的过渡金属二色元(TMD)单层和近端层组成的复合材料。我们扩展了三波段模型,以描述此类系统的山谷状态。结果表明,事实证明,“时间逆转 +分数翻译”或“镜像”对称性可以保护山谷退化。此外,已经进行了基于密度功能理论(DFT)的第一原理计算,以验证从扩展的紧密结合(TB)模型中获得的结果。本工作中引入的结核病方法可以正确地描述山谷材料的低能物理学,这些物理学与复杂的磁性构型相结合。结果扩大了用于山谷分裂的合格接近层的范围,从而使山谷学位更灵活地操纵。

Various physical phenomena have been discovered by tuning degrees of freedom, among which there is the degree of freedom (DOF) -- "valley". The typical valley materials are characterized by two degenerate valley states protected by time-reversal symmetry (TS). These states indexed by valley DOF have been measured and manipulated for emergent valley-contrasting physics with the broken valley degeneracy. To achieve the valley splitting resulted from TS breaking, previous studies mainly focused on magnetic proximity effect provided by ferromagnetic (FM) layer. Nevertheless, the anti-ferromagnetic (AFM) proximity effect on the valley degeneracy has never been investigated systematically. In this work, we construct the composites consisting of a transitionmetal dichalcogenide (TMD) monolayer and a proximity layer with specific intra-plane AFM configurations. We extend the three-band model to describe the valley states of such systems. It is shown that either "time-reversal + fractional translation" or "mirror" symmetry has been proved to protect valley degeneracy. Additionally, first-principles calculations based on density functional theory (DFT) have been performed to verify the results obtained from the extended tight-binding (TB) model. The TB method introduced in the present work can properly describe the low-energy physics of valley materials that couple to the proximity with complex magnetic configurations. The results expand the range of qualified proximity layers for valley splitting, enabling more flexible manipulation of valley degree.

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