论文标题
Moiré超晶格的田间诱导的绝缘子中的量子振荡
Quantum oscillations in field-induced correlated insulators of a moiré superlattice
论文作者
论文摘要
我们报告了扭曲双重双层石墨烯(TDBG)的山谷各向异性的量子振荡(QoS)的观察。最好在v = -2的绝缘子的磁电阻率振荡中捕获异常的QoS,其周期为1/B,振荡幅度高达150kΩ。 QoS可以生存到〜10 K,并且在12 K以上,绝缘行为是主导的。绝缘子的QoS非常依赖:从1/B周期性提取的载体密度几乎用D线性降低到-0.7至-1.1 V/NM,表明费米表面降低; LIFSHITZ -KOSEVICH分析的有效质量非线性取决于D,在D =〜 -1.0 V/NM时达到0.1 Me的最小值。在v = 2和其他没有石墨门的设备中也发现了QoS的类似观察结果。我们解释了频段反转图片中相关绝缘子的敏感QoS。通过重建具有测得的有效质量和费米表面的倒带模型,从热宽的Landau水平计算出的间隙状态密度与绝缘体中观察到的QoS定性一致。尽管将来需要更多的理论理解才能充分说明该莫伊尔系统中异常的QoS,但我们的研究表明,TDBG是发现相关性和拓扑发挥作用的异国情调阶段的绝佳平台。
We report an observation of quantum oscillations (QOs) in the correlated insulators with valley anisotropy of twisted double bilayer graphene (TDBG). The anomalous QOs are best captured in the magneto resistivity oscillations of the insulators at v = -2, with a period of 1/B and an oscillation amplitude as high as 150 kΩ. The QOs can survive up to ~10 K, and above 12 K, the insulating behaviors are dominant. The QOs of the insulator are strongly D dependent: the carrier density extracted from the 1/B periodicity decreases almost linearly with D from -0.7 to -1.1 V/nm, suggesting a reduced Fermi surface; the effective mass from Lifshitz-Kosevich analysis depends nonlinearly on D, reaching a minimal value of 0.1 me at D = ~ -1.0 V/nm. Similar observations of QOs are also found at v = 2, as well as in other devices without graphite gate. We interpret the D sensitive QOs of the correlated insulators in the picture of band inversion. By reconstructing an inverted band model with the measured effective mass and Fermi surface, the density of state at the gap, calculated from thermal broadened Landau levels, agrees qualitatively with the observed QOs in the insulators. While more theoretical understandings are needed in the future to fully account for the anomalous QOs in this moiré system, our study suggests that TDBG is an excellent platform to discover exotic phases where correlation and topology are at play.