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Evidence for Two Superconducting Gaps in $MgB_2$

Superconductivity 2016-08-31 v3

Abstract

We have measured the Raman spectra of polycrystalline MgB2_{2} from 25 {\cm} to 1200 {\cm}. When the temperature was decreased below the superconducting transition temperature TcT_c, we observed a superconductivity-induced redistribution in the electronic Raman continuum. Two pair-breaking peaks appear in the spectra, suggesting the presence of two superconducting gaps. Furthermore, we have analyzed the measured spectra using a quasi two-dimensional model in which two s-wave superconducting gaps open on two sheets of Fermi surface. For the gap values we have obtained Δ1=22cm1\Delta_1 = 22 cm^{-1} (2.7 meV) and Δ2=50cm1\Delta_2 = 50 cm^{-1} (6.2 meV). Our results suggest that a conventional phonon-mediated pairing mechanism occurs in the planar boron σ\sigma bands and is responsible for the superconductivity of MgB2_{2}.

Keywords

Cite

@article{arxiv.cond-mat/0104005,
  title  = {Evidence for Two Superconducting Gaps in $MgB_2$},
  author = {X. K. Chen and M. J. Konstantinovic and J. C. Irwin and D. D. Lawrie and J. P. Franck},
  journal= {arXiv preprint arXiv:cond-mat/0104005},
  year   = {2016}
}

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R2 v1 2026-07-22T10:19:08.646Z