论文标题
扭曲多层石墨烯中的超导性:最近凝结物理学的吸烟枪
Superconductivity in twisted multilayer graphene: a smoking gun in recent condensed matter physics
论文作者
论文摘要
在本文中,我们回顾了石墨烯中外来现象的最新发现,尤其是超导性。从理论上讲,已经提出了十多年来,即在基于掺杂的石墨烯的材料中可能出现超导性。对于单层石墨烯,有理论上的预测是,当填充物围绕DIRAC点附近时,旋转singlet $ d+id $配对超导性存在。如果将费米水平掺杂到范霍夫的奇异性,在该状态的密度分歧下,则会出现非常规的超导性。但是,实验视角有些令人失望。尽管进行了广泛的实验努力,但在单层石墨烯中仍未发现超导性。最近,在“魔法角”双层石墨烯中发现了非常规超导性。在ABC堆叠的三层石墨烯和其他系统中也发现了超导性。在本文中,我们回顾了石墨烯中超导状态的独特特性,通过实验控制扭曲的双层石墨烯中的超导性,以及栅极可调的莫特绝缘子以及三层石墨烯中的超导性。这些发现吸引了许多物理学家的注意。在最近的冷凝物理学中,对扭曲多层石墨烯中电子相关状态的研究是吸烟枪。
In this article, we review the recent discoveries of exotic phenomena in graphene, especially superconductivity. It has been theoretically suggested for more than one decade that superconductivity may emerge in doped graphene-based materials. For single-layer graphene, there are theoretical predictions that spin-singlet $d+id$ pairing superconductivity is present when the filling is around the Dirac point. If the Fermi level is doped to the Van Hove singularity where the density of states diverges, then unconventional superconductivity with other pairing symmetry would appear. However, the experimental perspective was a bit disappointing. Despite extensive experimental efforts, superconductivity was not found in monolayer graphene. Recently, unconventional superconductivity was found in "magic-angle" twisted bilayer graphene. Superconductivity was also found in ABC stacked trilayer graphene and other systems. In this article, we review the unique properties of superconducting states in graphene, experimentally controlling the superconductivity in twisted bilayer graphene, as well as a gate-tunable Mott insulator, and the superconductivity in trilayer graphene. These discoveries have attracted the attention of a large number of physicists. The study of the electronic correlated states in twisted multilayer graphene serves as a smoking gun in recent condensed matter physics.