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Superconductivity in an electron band just above the Fermi level: possible route to BCS-BEC superconductivity

机译:刚好在费米能级以上的电子带中的超导性:通往BCS-BEC超导性的可能途径

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摘要

Conventional superconductivity follows Bardeen-Cooper-Schrieffer(BCS) theory of electrons-pairing in momentum-space, while superfluidity is the Bose-Einstein condensation(BEC) of atoms paired in real-space. These properties of solid metals and ultra-cold gases, respectively, are connected by the BCS-BEC crossover. Here we investigate the band dispersions in FeTe0.6Se0.4(Tc = 14.5 K ~ 1.2 meV) in an accessible range below and above the Fermi level(EF) using ultra-high resolution laser angle-resolved photoemission spectroscopy. We uncover an electron band lying just 0.7 meV (~8 K) above EF at the Γ-point, which shows a sharp superconducting coherence peak with gap formation below Tc. The estimated superconducting gap Δ and Fermi energy indicate composite superconductivity in an iron-based superconductor, consisting of strong-coupling BEC in the electron band and weak-coupling BCS-like superconductivity in the hole band. The study identifies the possible route to BCS-BEC superconductivity.
机译:常规的超导性遵循动量空间中电子配对的Bardeen-Cooper-Schrieffer(BCS)理论,而超流动性是在现实空间中配对的原子的Bose-Einstein凝聚(BEC)。固体金属和超冷气体的这些特性分别通过BCS-BEC分频器连接。在这里,我们使用超高分辨率激光角度分辨光发射光谱法研究了FeTe0.6Se0.4(Tc = 14.5 K〜1.2 meV)在费米能级(EF)上下的可及范围内的能带色散。我们发现在Γ点处仅比EF高0.7 abovemeV(〜8 K)的电子带,显示出一个尖锐的超导相干峰,在Tc以下形成了间隙。估计的超导间隙Δ和费米能表示铁基超导体的复合超导性,它由电子带中的强耦合BEC和空穴带中的弱耦合BCS状超导组成。该研究确定了通往BCS-BEC超导性的可能途径。

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