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Element-Specific Orbital Character in a Nearly-Free-Electron Superconductor Ag5Pb2O6 Revealed by Core-Level Photoemission

机译:核心能级光发射揭示了近自由电子超导体Ag5Pb2O6中特定元素的轨道特征

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摘要

Ag5Pb2O6 has attracted attentions due to its novel nearly-free-electron superconductivity, but its electronic structure and orbital character of the Cooper-pair electrons remain controversial. Here, we present a method utilizing core-level photoemission to show that Pb 6s electrons dominate near the Fermi level. We observe a strongly asymmetric Pb 4 f 7/2 core-level spectrum, while a Ag 3d 5/2 spectrum is well explained by two symmetric peaks. The asymmetry in the Pb 4 f 7/2 spectrum originates from the local attractive interaction between conducting Pb 6s electrons and a Pb 4 f 7/2 core hole, which implies a dominant Pb 6s contribution to the metallic conduction. In addition, the observed Pb 4 f 7/2 spectrum is not explained by the well-known Doniach-Šunjić lineshape for a simple metal. The spectrum is successfully generated by employing a Pb 6s partial density of states from local density approximation calculations, thus confirming the Pb 6s dominant character and free-electron-like density of states of Ag5Pb2O6.
机译:Ag5Pb2O6由于其新颖的近自由电子超导性而备受关注,但是其电子结构和库珀对电子的轨道特性仍存在争议。在这里,我们提出一种利用核心能级光发射的方法,表明Pb 6s电子在费米能级附近占主导地位。我们观察到强烈不对称的Pb 4 f 7/2核心能级谱,而Ag 3d 5/2谱由两个对称峰很好地解释了。 Pb 4 f 7/2光谱中的不对称性起源于导电Pb 6s电子与Pb 4 f 7/2芯孔之间的局部吸引相互作用,这暗示了Pb 6s对金属导电的主要贡献。此外,众所周知的简单金属的Doniach-Šunjić线形无法解释观测到的Pb 4 f 7/2光谱。通过从局部密度近似计算中采用Pb 6s的部分态密度成功生成了光谱,从而确认了Ag5Pb2O6的Pb 6s的主导特征和类自由电子态的密度。

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