论文标题

扭曲的三层石墨烯中强相关相的狄拉克锥光谱

Dirac cone spectroscopy of strongly correlated phases in twisted trilayer graphene

论文作者

Shen, Cheng, Ledwith, Patrick J., Watanabe, Kenji, Taniguchi, Takashi, Khalaf, Eslam, Vishwanath, Ashvin, Efetov, Dmitri K.

论文摘要

镜像对称魔法角扭角三层石墨烯(MATTG)的托管接近零能的平坦电子带,最近已显示出具有柔性电气可调性的丰富相关量子相。然而,研究这些阶段被证明是具有挑战性的,因为这些阶段被交织在一起的狄拉克带所掩盖。在这项工作中,我们展示了一种新型的光谱技术,可以通过驱动狄拉克锥体降低水平和平坦频段中的能量差距来量化MATTG中相关状态的能量差距和Chern数量。我们发现了与nu = 2和3的整数moire校准填充物在整数Moire单位细胞填充物的C = 0的硬性间隙,并揭示了来自NU = 5/3和11/3的分数填充物处的van Hove奇异性的新型电荷密度波状态。此外,我们证明了位移场在电荷中立性的一阶相变的存在,而Moire单位单元格NU = 2的一半填充物,这与理论上的强耦合分析一致,这意味着C2T对称性的破坏。总体而言,这些特性建立了MATTG的多样化和电气可调的相图,并为研究电子量子相和多波段Moire系统中的强相关性提供了途径。

Mirror-symmetric magic-angle twisted trilayer graphene (MATTG) hosts flat electronic bands close to zero energy, and has been recently shown to exhibit abundant correlated quantum phases with flexible electrical tunability. However studying these phases proved challenging as these are obscured by intertwined Dirac bands. In this work, we demonstrate a novel spectroscopy technique, that allows to quantify the energy gaps and Chern numbers of the correlated states in MATTG by driving band crossings between Dirac cone Landau levels and the energy gaps in the flat bands. We uncover hard correlated gaps with Chern numbers of C = 0 at integer moire unit cell fillings of nu = 2 and 3 and reveal novel charge density wave states originating from van Hove singularities at fractional fillings of nu = 5/3 and 11/3. In addition, we demonstrate the existence of displacement field driven first-order phase transitions at charge neutrality and half fillings of the moire unit cell nu = 2, which is consistent with a theoretical strong-coupling analysis, implying the breaking of the C2T symmetry. Overall these properties establish the diverse and electrically tunable phase diagram of MATTG and provide an avenue for investigating electronic quantum phases and strong correlations in multiple-band moire systems.

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