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Crossover from multiple-to single-gap superconductivity in Nb5Ir3-xPtx O alloys

  • Y. Xu
  • , S. Jöhr
  • , L. Das
  • , J. Kitagawa
  • , M. Medarde
  • , T. Shiroka
  • , J. Chang
  • , T. Shang*
  • *此作品的通讯作者
  • University of Zurich
  • Fukuoka Institute of Technology
  • Paul Scherrer Institute
  • Swiss Federal Institute of Technology Zurich

科研成果: 期刊稿件文章同行评审

摘要

By using mostly the muon-spin rotation/relaxation (μSR) technique, we investigate the superconductivity (SC) of Nb5Ir3-xPtxO (x=0 and 1.6) alloys, with Tc=10.5 and 9.1 K, respectively. At a macroscopic level, their superconductivity was studied by electrical resistivity, magnetization, and specific-heat measurements. In both compounds, the electronic specific heat and the low-temperature superfluid density data suggest a nodeless SC. The superconducting gap value and the specific heat discontinuity at Tc are larger than that expected from BCS theory in the weak-coupling regime, indicating strong-coupling superconductivity in the Nb5Ir3-xPtxO family. In Nb5Ir3O, multigap SC is evidenced by the field dependence of the electronic specific heat coefficient and the superconducting Gaussian relaxation rate, as well as by the temperature dependence of the upper critical field. Pt substitution suppresses one of the gaps, and Nb5Ir1.4Pt1.6O becomes a single-gap superconductor. By combining our extensive experimental results, we provide evidence for a multiple-to single-gap SC crossover in the Nb5Ir3-xPtxO family.

源语言英语
期刊论文编号134513
期刊Physical Review B
101
13
DOI
出版状态已出版 - 1 4月 2020
已对外发布

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