Universal 2 Delta(Max)/K(B)T(C) Scaling Decoupled From The Electronic Coherence In Iron-Based Superconductors

PHYSICAL REVIEW B(2018)

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摘要
Here, we use angle-resolved photoemission spectroscopy to study superconductivity that emerges in two extreme cases, from a Fermi-liquid phase (LiFeAs) and an incoherent bad-metal phase (FeTe0.55Se0.45). We find that although the electronic coherence can strongly reshape the single-particle spectral function in the superconducting state, it is decoupled from the maximum-superconducting-gap and T-c ratio 2 Delta(max)/k(B)T(c) which shows a universal scaling that is valid for all iron-based superconductors (FeSCs). Our observation excludes pairing scenarios in the BCS and the BEC limit for FeSCs and calls for a universal strong-coupling pairing mechanism for the FeSCs.
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