论文标题
单层NBTE2中的戴戴维星晶格的充电订单
Charge order with unusual star-of-David lattice in monolayer NbTe2
论文作者
论文摘要
费米学与电子相关性之间的相互作用对于实现外来量子相至关重要。由于其独特的莫特(Mott)构造相与电荷密度波(CDW)共存,因此过渡金属二北元(TMD)1T-TAS2引起了极大的关注。但是,尚未清楚地将费米学和电子相关性与此类特性相关。在这里,我们证明了单层1T-NBTE2是一个新的二维TMD类,其戴戴维星的晶格类似于散装TAS2和ISSOSTRUCTURal单层NBSE2,但具有金属的基础状态,具有与明显占有斑点的不寻常lattice root19 root19xroot19的异常晶格。通过使用角度分辨的光发射和扫描接触光谱镜结合第一原理带结构计算,我们发现隐藏的费米 - 表面嵌套和相关的CDW形成是实现这种独特的相关金属状态的主要原因。目前的结果表明,基本的fermiology表征TMD的Mott阶段的至关重要作用。
Interplay between fermiology and electron correlation is crucial for realizing exotic quantum phases. Transition-metal dichalcogenide (TMD) 1T-TaS2 has sparked a tremendous attention owing to its unique Mott-insulating phase coexisting with the charge-density wave (CDW). However, how the fermiology and electron correlation are associated with such properties has yet to be claried. Here we demonstrate that monolayer 1T-NbTe2 is a new class of two-dimensional TMD which has the star-of-David lattice similarly to bulk TaS2 and isostructural monolayer NbSe2, but exhibits a metallic ground state with an unusual lattice periodicity root19xroot19 characterized by the sparsely occupied star-of-David lattice. By using angle-resolved photoemission and scanning-tunneling spectroscopies in combination with first-principles band-structure calculations, we found that the hidden Fermi-surface nesting and associated CDW formation are a primary cause to realize this unique correlated metallic state with no signature of Mott gap. The present result points to a vital role of underlying fermiology to characterize the Mott phase of TMDs.