论文标题

旋转天际距离作为魔法扭曲双层石墨烯中强耦合绝缘子的签名

Spin skyrmion gaps as signatures of strong-coupling insulators in magic-angle twisted bilayer graphene

论文作者

Yu, Jiachen, Foutty, Benjamin A., Kwan, Yves H., Barber, Mark E., Watanabe, Kenji, Taniguchi, Takashi, Shen, Zhi-Xun, Parameswaran, Siddharth A., Feldman, Benjamin E.

论文摘要

魔法扭曲的双层石墨烯(MATBG)中的平坦电子带容纳了各种相关的绝缘接地状态,其中许多基本带预计将支持带有拓扑非平凡的旋转和/或Valley Skyrmion Skyrmion纹理的带电激发。但是,在实验中解决其基态秩序和激发的问题仍然充满挑战,这都是因为某些拟议的状态不直接与实验探针息息相关,并且因为它们对实际样本中的空间不均匀性高度敏感。在这里,使用扫描单电子晶体管,我们在低磁场处观察到整数Moiré填充因子处的热力学间隙。我们发现从带电的旋转天空到裸露的颗粒状激发的场合交叉的证据,这表明潜在的基态属于强耦合绝缘子的歧管。从这些状态的空间依赖性以及平坦带中的化学势变化,我们推断出相关基态的稳定性与局部扭曲角度和应变之间的联系。我们的工作增进了对MATBG中相关绝缘子及其非常规激发的微观理解。

The flat electronic bands in magic-angle twisted bilayer graphene (MATBG) host a variety of correlated insulating ground states, many of which are predicted to support charged excitations with topologically non-trivial spin and/or valley skyrmion textures. However, it has remained challenging to experimentally address their ground state order and excitations, both because some of the proposed states do not couple directly to experimental probes, and because they are highly sensitive to spatial inhomogeneities in real samples. Here, using a scanning single-electron transistor, we observe thermodynamic gaps at even integer moiré filling factors at low magnetic fields. We find evidence of a field-tuned crossover from charged spin skyrmions to bare particle-like excitations, suggesting that the underlying ground state belongs to the manifold of strong-coupling insulators. From the spatial dependence of these states and the chemical potential variation within the flat bands, we infer a link between the stability of the correlated ground states and local twist angle and strain. Our work advances the microscopic understanding of the correlated insulators in MATBG and their unconventional excitations.

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