论文标题
在Kagome超导体CS(V1-XNBX)3SB5中调整超导和充电顺序之间的竞争
Tuning the competition between superconductivity and charge order in kagome superconductor Cs(V1-xNbx)3Sb5
论文作者
论文摘要
最近发现的超导性和电荷密度波顺序AV3SB5(a = k,rb,cs)的共存引起了巨大的兴趣。根据理论,基于气泡体的kagome系统可以容纳平坦的频带,非平凡的线性分散狄拉克表面状态和电子相关性。尽管进行了深入研究,但它仍然对电荷密度波(CDW)顺序的起源有争议,超导性与CDW的关系如何,以及主要来自Kagome晶格或CDW阶的异常霍尔效应(AHE)。我们报告了针对系统NB掺杂的CS(V1-XNBX)3SB5样品的广泛研究。我们的结果表明,NB掺杂会诱导CDW顺序的明显抑制并促进超导性。同时,AHE和磁敏感(MR)将与CDW顺序一起显着削弱。结合我们的密度功能计算,我们通过相对于M附近的鞍点和围绕γ的Fermi表面的鞍点的反相移动来解释这些效果。发现前者耗尽了CDW不稳定性的填充状态,并使CDW顺序的嵌套条件恶化。而后者则将费米升高到上升,并扩大γ点周围的费米表面,从而促进超导性。我们的结果发现了CDW顺序与超导性之间的微妙但不寻常的竞争。
The recently discovered coexistence of superconductivity and charge density wave order in the kagome systems AV3Sb5 (A = K, Rb, Cs) has stimulated enormous interest. According to theory, a vanadium-based kagome system may host a flat band, nontrivial linear dispersive Dirac surface states and electronic correlation. Despite intensive investigations, it remains controversial about the origin of the charge density wave (CDW) order, how does the superconductivity relate to the CDW, and whether the anomalous Hall effect (AHE) arises primarily from the kagome lattice or the CDW order. We report an extensive investigation on Cs(V1-xNbx)3Sb5 samples with systematic Nb doping. Our results show that the Nb doping induces apparent suppression of CDW order and promotes superconductivity; meanwhile, the AHE and magnetoresistance (MR) will be significantly weakened together with the CDW order. Combining with our density functional calculations, we interpret these effects by an antiphase shift of the Fermi energy with respect to the saddle points near M and the Fermi surface centered around Γ. It is found that the former depletes the filled states for the CDW instability and worsens the nesting condition for CDW order; while the latter lifts the Fermi level upward and enlarges the Fermi surface surrounding the Γ point, and thus promotes superconductivity. Our results uncover a delicate but unusual competition between the CDW order and superconductivity.