Direct evidence for a magnetic f-electron-mediated pairing mechanism of heavy-fermion superconductivity in CeCoIn5

John S. Van Dyke, Freek Massee, Milan P. Allan, J. C. Seamus Davis*, Cedomir Petrovic, Dirk K. Morr

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

To identify the microscopic mechanism of heavy-fermion Cooper pairing is an unresolved challenge in quantum matter studies; it may also relate closely to finding the pairing mechanism of high-temperature superconductivity. Magnetically mediated Cooper pairing has long been the conjectured basis of heavy-fermion superconductivity but no direct verification of this hypothesis was achievable. Here, we use a novel approach based on precision measurements of the heavy-fermion band structure using quasiparticle interference imaging to reveal quantitatively the momentum space (k-space) structure of the f-electron magnetic interactions of CeCoIn5. Then, by solving the superconducting gap equations on the two heavy-fermion bands E-k(alpha,beta) with these magnetic interactions as mediators of the Cooper pairing, we derive a series of quantitative predictions about the superconductive state. The agreement found between these diverse predictions and the measured characteristics of superconducting CeCoIn5 then provides direct evidence that the heavy-fermion Cooper pairing is indeed mediated by f-electron magnetism.

Original languageEnglish
Pages (from-to)11663-11667
Number of pages5
JournalProceedings of the National Academy of Sciences of the United States of America
Volume111
Issue number32
DOIs
Publication statusPublished - 12 Aug 2014

Keywords

  • heavy fermion materials
  • unconventional superconductivity
  • f-electron-mediated pairing mechanism
  • D-WAVE SUPERCONDUCTIVITY
  • LATTICE

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