论文标题
扭曲的Moiré系统中的Valley偏振列秩序:面内轨道磁性和非芬特液体到费米液体跨界
Valley-polarized nematic order in twisted moiré systems: In-plane orbital magnetism and non-Fermi liquid to Fermi liquid crossover
论文作者
论文摘要
在扭曲的莫伊尔系统中,强相关性与非平凡拓扑之间的相互作用会引起富有有序状态的丰富景观,这些状态将旋转,山谷和自由度的自由度交织在一起。在本文中,我们研究了一个显示远程谷极化的列表的系统的性质。除了打破三角形摩尔超级晶格的三重旋转对称性外,这种类型的顺序还破坏了双重旋转和时间反向对称性,从而带来了有趣的属性。首先,我们开发了一个现象学模型,以描述扭曲的Moiré系统中这种有序状态的发作,并在其热力学和电子特性中探索其特征。它的主要表现是它触发了沿高对称晶格方向定向的平面内轨道磁矩的出现。我们还研究了零温度下谷极化列态的特性。由于存在描述推定的谷极化的nematic量子临界点的六态时钟模型中危险无关的耦合$λ$,因此有序状态显示了伪金石模式。我们使用两个斑点模型计算费米子自能源,以表明能量非常低,伪基石模式与电子自由度之间的类似Yukawa的耦合促进了非弗米液体行为的出现。在交叉能量尺度下方$ω^{*} \simλ^{3/2} $,但是,费米液体行为已恢复。最后,我们讨论了这些结果对其他非平凡列态的适用性,例如自旋极化列相。
The interplay between strong correlations and non-trivial topology in twisted moiré systems can give rise to a rich landscape of ordered states that intertwine the spin, valley, and charge degrees of freedom. In this paper, we investigate the properties of a system that displays long-range valley-polarized nematic order. Besides breaking the threefold rotational symmetry of the triangular moiré superlattice, this type of order also breaks twofold rotational and time-reversal symmetries, which leads to interesting properties. First, we develop a phenomenological model to describe the onset of this ordered state in twisted moiré systems and to explore its signatures in their thermodynamic and electronic properties. Its main manifestation is that it triggers the emergence of in-plane orbital magnetic moments oriented along high-symmetry lattice directions. We also investigate the properties of the valley-polarized nematic state at zero temperature. Due to the existence of a dangerously irrelevant coupling $λ$ in the six-state clock model that describes the putative valley-polarized nematic quantum critical point, the ordered state displays a pseudo-Goldstone mode. Using a two-patch model, we compute the fermionic self-energy to show that down to very low energies, the Yukawa-like coupling between the pseudo-Goldstone mode and the electronic degrees of freedom promotes the emergence of non-Fermi liquid behavior. Below a crossover energy scale $Ω^{*}\simλ^{3/2}$, however, Fermi liquid behavior is recovered. Finally, we discuss the applicability of these results to other non-trivial nematic states, such as the spin-polarized nematic phase.