论文标题
Kagome超导体KV3SB5中电荷密度波的三维能量差距和起源
Three-dimensional energy gap and origin of charge-density wave in kagome superconductor KV3Sb5
论文作者
论文摘要
Kagome Lattices为探索与电子相关性和带拓扑相关的外来量子现象提供了肥沃的地面。在Kagome Metals KV3SB5,RBV3SB5和CSV3SB5中,最近发现与电荷密度波(CDW)共存的超导性的发现表明电子秩序和超导性的纠缠令人着迷。但是,CDW的微观起源是理解超导机制及其可能的拓扑性质的关键,仍然难以捉摸。在这里,我们报告了KV3SB5的角度分辨光发射光谱,并在CDW状态下表现出了Fermi表面的大量重建,伴随着小三维口袋的形成。 CDW间隙在平面外浪矢量沿未经发生的布里鲁因区域表现出一个周期性,这表明平面间插入点散射的主要作用是CDW的机理。实验条带分散的特征可以通过与戴戴维恒星结构变形的第一原理计算来捕获。目前的结果表明,低能激发与CDW之间存在直接联系,并在碱金属量晶格中对超导性的显微镜理论构成了限制。
Kagome lattices offer a fertile ground to explore exotic quantum phenomena associated with electron correlation and band topology. The recent discovery of superconductivity coexisting with charge-density wave (CDW) in the kagome metals KV3Sb5, RbV3Sb5, and CsV3Sb5 suggests an intriguing entanglement of electronic order and superconductivity. However, the microscopic origin of CDW, a key to understanding the superconducting mechanism and its possible topological nature, remains elusive. Here, we report angle-resolved photoemission spectroscopy of KV3Sb5 and demonstrate a substantial reconstruction of Fermi surface in the CDW state that accompanies the formation of small three-dimensional pockets. The CDW gap exhibits a periodicity of undistorted Brillouin zone along the out-of-plane wave vector, signifying a dominant role of the in-plane inter-saddle-point scattering to the mechanism of CDW. The characteristics of experimental band dispersion can be captured by first-principles calculations with the inverse star-of-David structural distortion. The present result indicates a direct link between the low-energy excitations and CDW, and puts constraints on the microscopic theory of superconductivity in alkali-metal kagome lattices.