超导电性
凝聚态物理
费米能级
角分辨光电子能谱
光电发射光谱学
物理
态密度
材料科学
电子结构
结晶学
电子
X射线光电子能谱
核磁共振
化学
量子力学
作者
Takemi Kato,Yongkai Li,K. Nakayama,Zhiwei Wang,S. Souma,Fumihiko Matsui,Miho Kitamura,Koji Horiba,Hiroshi Kumigashira,T. Takahashi,Yugui Yao,T. Sato
标识
DOI:10.1103/physrevlett.129.206402
摘要
Kagome metals AV_{3}Sb_{5} (A=K, Rb, and Cs) exhibit a characteristic superconducting ground state coexisting with a charge density wave (CDW), whereas the mechanisms of the superconductivity and CDW have yet to be clarified. Here we report a systematic angle-resolved photoemission spectroscopy (ARPES) study of Cs(V_{1-x}Nb_{x})_{3}Sb_{5} as a function of Nb content x, where isovalent Nb substitution causes an enhancement of superconducting transition temperature (T_{c}) and the reduction of CDW temperature (T_{CDW}). We found that the Nb substitution shifts the Sb-derived electron band at the Γ point downward and simultaneously moves the V-derived band around the M point upward to lift up the saddle point (SP) away from the Fermi level, leading to the reduction of the CDW-gap magnitude and T_{CDW}. This indicates a primary role of the SP density of states to stabilize the CDW. The present result also suggests that the enhancement of superconductivity by Nb substitution is caused by the cooperation between the expansion of the Sb-derived electron pocket and the recovery of the V-derived density of states at the Fermi level.
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