论文标题
在范德华单层中,限制工程的超导体与相关的绝缘体过渡
Confinement-engineered superconductor to correlated-insulator transition in a van der Waals monolayer
论文作者
论文摘要
过渡金属二北元(TMDC)是一个丰富的二维材料家族,显示了许多不同的量子基态。尤其是,d $^3 $ tmdc是范式材料,具有各种对称性破碎状态,包括电荷密度波,超导性和磁性。在这个家庭中,NBSE $ _2 $是迄今为止限制最佳的超导材料之一。尽管具有超导性的性质,但各种各样的结果表明,NBSE $ _2 $中的电子排斥力很强。在这里,我们通过量子限制在实验中控制相互作用的强度,并使用低温扫描隧道显微镜(STM)和光谱法(STS),以证明NBSE $ _2 $与相关的绝缘状态非常接近。这揭示了NBSE $ _2 $中竞争相互作用的共存,从而通过限制控制的交互作用从超导到绝缘量子相关状态的过渡。我们的结果表明,互动在NBSE $ _2 $中的戏剧性作用,将NBSE $ _2 $作为与竞争互动相关的超导体建立。
Transition metal dichalcogenides (TMDC) are a rich family of two-dimensional materials displaying a multitude of different quantum ground states. In particular, d$^3$ TMDCs are paradigmatic materials hosting a variety of symmetry broken states, including charge density waves, superconductivity, and magnetism. Among this family, NbSe$_2$ is one of the best-studied superconducting materials down to the monolayer limit. Despite its superconducting nature, a variety of results point towards strong electronic repulsions in NbSe$_2$. Here, we control the strength of the interactions experimentally via quantum confinement and use low-temperature scanning tunneling microscopy (STM) and spectroscopy (STS) to demonstrate that NbSe$_2$ is in close proximity to a correlated insulating state. This reveals the coexistence of competing interactions in NbSe$_2$, creating a transition from a superconducting to an insulating quantum correlated state by confinement-controlled interactions. Our results demonstrate the dramatic role of interactions in NbSe$_2$, establishing NbSe$_2$ as a correlated superconductor with competing interactions.