凝聚态物理
莫特绝缘子
兴奋剂
铜酸盐
扫描隧道显微镜
带隙
单层
材料科学
超导电性
费米能级
费米面
电子
纳米技术
物理
量子力学
作者
Li Han,Zhaohui 朝晖 Wang 王,Shengtai 圣泰 Fan 范,Huazhou 华州 Li 李,Huan Yang,Haihu 海虎 Wen 闻
标识
DOI:10.1088/0256-307x/41/5/057402
摘要
Understanding the doping evolution from a Mott insulator to a superconductor probably holds the key to resolve the mystery of unconventional superconductivity in copper oxides. To elucidate the evolution of the electronic state starting from the Mott insulator, we dose the surface of the parent phase Ca 2 CuO 2 Cl 2 by depositing Rb atoms, which are supposed to donate electrons to the CuO 2 planes underneath. We successfully achieved the Rb sub-monolayer thin films in forming the square lattice. The scanning tunneling microscopy or spectroscopy measurements on the surface show that the Fermi energy is pinned within the Mott gap but close to the edge of the charge transfer band. In addition, an in-gap state appears at the bottom of the upper Hubbard band (UHB), and the Mott gap will be significantly diminished. Combined with the Cl defect and the Rb adatom/cluster results, the electron doping is likely to increase the spectra weight of the UHB for the double occupancy. Our results provide information to understand the electron doping to the parent compound of cuprates.
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