论文标题

光学电导率作为菱形三层石墨烯中相互作用驱动的金属的探针

Optical conductivity as a probe of the interaction-driven metal in rhombohedral trilayer graphene

论文作者

Juričić, Vladimir, Muñoz, Enrique, Soto-Garrido, Rodrigo

论文摘要

研究范德华异质结构中强相关状态的研究是现代冷凝物理物理学中的核心主题之一。其中,菱形三层石墨烯(RTG)占据着一个突出的位置,因为它具有各种相互作用驱动的相位,金属阶段在掺杂时产生了异国情调的超导顺序。在这些实验发现的驱动下,我们在低能量迪拉克理论的框架内表明,光学电导率可以区分该系统中顺磁金属基态的不同候选者。特别是,这种可观察到的可观察到的价值键状态的单个峰。另一方面,随着探测频率的增加,键流状态在光导率中具有两个明显的峰。最后,旋转对称性断裂电荷密度波的电导率最小,值独立于顺序参数的幅度,这与两个立方体的分裂点在两个谷所的两个三立方点分裂成两个三立方体的分裂中,分为带有线性分散quasiparticles的带触摸点的两个三重态。这些特征代表了顺磁金属基态的不同候选秩序参数的吸烟枪标志,这应该激发RTG的进一步实验研究。

Study of the strongly correlated states in van der Waals heterostructures is one of the central topics in modern condensed matter physics. Among these, the rhombohedral trilayer graphene (RTG) occupies a prominent place since it hosts a variety of interaction-driven phases, with the metallic ones yielding exotic superconducting orders upon doping. Motivated by these experimental findings, we show within the framework of the low-energy Dirac theory that the optical conductivity can distinguish different candidates for a paramagnetic metallic ground state in this system. In particular, this observable shows a single peak in the fully gapped valence-bond state. On the other hand, the bond-current state features two pronounced peaks in the optical conductivity as the probing frequency increases. Finally, the rotational symmetry breaking charge-density wave exhibits a minimal conductivity with the value independent of the amplitude of the order parameter, which corresponds precisely to the splitting of the two cubic nodal points at the two valleys into two triplets of the band touching points featuring linearly dispersing quasiparticles. These features represent the smoking gun signatures of different candidate order parameters for the paramagnetic metallic ground state, which should motivate further experimental studies of the RTG.

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