论文标题

一半填充扭曲的双层石墨烯的异常大厅效应

Anomalous Hall effect at half filling in twisted bilayer graphene

论文作者

Tseng, Chun-Chih, Ma, Xuetao, Liu, Zhaoyu, Watanabe, Kenji, Taniguchi, Takashi, Chu, Jiun-Haw, Yankowitz, Matthew

论文摘要

由于其丰富的对称性阶段,相关的Chern绝缘子,轨道磁性和超导性。特别是,在少量TBLG设备中观察到在奇数整数填充因子($ν= 1 $和$ 3 $)处观察到异常的大厅效应(AHE),这表明出现了零视野轨道磁状态,并具有自发损坏的时间反向对称性。但是,由于竞争间隔相干性状态以及旋转偏振和山谷大厅的状态,通常不会预料到一半填充($ν= 2 $)的AHE。在这里,我们介绍了两个TBLG设备的测量值,这些设备略微远离魔法角度(0.96 $^{\ circ} $和1.20 $^{\ circ} $),其中我们报告了对AHE的惊人观察到$ν=+2 $和$ -2 $。这些发现表明,山谷偏振相可以变成一半填充TBLG的基态,远离魔法角度。我们的结果揭示了在中间耦合方案中出现意外基础状态的出现($ u/w \ sim 1 $,其中$ u $是库仑排斥的力量,而$ w $是带宽的力量),在强烈相关的绝缘子和弱相关的金属之间,突出了对tblg compterly comply lignly comply comply comply comply comply comply comply comply comptly comptly的限制。

Magic-angle twisted bilayer graphene (tBLG) has been studied extensively owing to its wealth of symmetry-broken phases, correlated Chern insulators, orbital magnetism, and superconductivity. In particular, the anomalous Hall effect (AHE) has been observed at odd integer filling factors ($ν=1$ and $3$) in a small number of tBLG devices, indicating the emergence of a zero-field orbital magnetic state with spontaneously broken time-reversal symmetry. However, the AHE is typically not anticipated at half filling ($ν=2$) owing to competing intervalley coherent states, as well as spin-polarized and valley Hall states that are favored by an intervalley Hund's coupling. Here, we present measurements of two tBLG devices with twist angles slightly away from the magic angle (0.96$^{\circ}$ and 1.20$^{\circ}$), in which we report the surprising observation of the AHE at $ν=+2$ and $-2$, respectively. These findings imply that a valley-polarized phase can become the ground state at half filling in tBLG rotated slightly away from the magic angle. Our results reveal the emergence of an unexpected ground state in the intermediately-coupled regime ($U/W \sim 1$, where $U$ is the strength of Coulomb repulsion and $W$ is the bandwidth), in between the strongly-correlated insulator and weakly-correlated metal, highlighting the need to develop a more complete understanding of tBLG away from the strongly-coupled limit.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源