Călugăru Dumitru, Regnault Nicolas, Oh Myungchul, Nuckolls Kevin P, Wong Dillon, Lee Ryan L, Yazdani Ali, Vafek Oskar, Bernevig B Andrei
Department of Physics, Princeton University, Princeton, New Jersey 08544, USA.
National High Magnetic Field Laboratory, Tallahassee, Florida 32310, USA.
Phys Rev Lett. 2022 Sep 9;129(11):117602. doi: 10.1103/PhysRevLett.129.117602.
We analytically compute the scanning tunneling microscopy (STM) signatures of integer-filled correlated ground states of the magic angle twisted bilayer graphene (TBG) narrow bands. After experimentally validating the strong-coupling approach at ±4 electrons/moiré unit cell, we consider the spatial features of the STM signal for 14 different many-body correlated states and assess the possibility of Kekulé distortion (KD) emerging at the graphene lattice scale. Remarkably, we find that coupling the two opposite graphene valleys in the intervalley-coherent (IVC) TBG insulators does not always result in KD. As an example, we show that the Kramers IVC state and its nonchiral U(4) rotations do not exhibit any KD, while the time-reversal-symmetric IVC state does. Our results, obtained over a large range of energies and model parameters, show that the STM signal and Chern number of a state can be used to uniquely determine the nature of the TBG ground state.
我们通过解析计算了魔角扭曲双层石墨烯(TBG)窄带整数填充关联基态的扫描隧道显微镜(STM)特征。在实验验证了±4个电子/莫尔晶胞的强耦合方法后,我们考虑了14种不同多体关联态的STM信号的空间特征,并评估了石墨烯晶格尺度上出现凯库勒畸变(KD)的可能性。值得注意的是,我们发现,在谷间相干(IVC)的TBG绝缘体中,耦合两个相反的石墨烯谷并不总是会导致KD。例如,我们表明,克莱默斯IVC态及其非手性U(4)旋转不表现出任何KD,而时间反演对称的IVC态则表现出KD。我们在大范围的能量和模型参数下获得的结果表明,一个态的STM信号和陈数可用于唯一确定TBG基态的性质。