English

CeIrIn5: Superconductivity on a Magnetic Instability

Strongly Correlated Electrons 2014-01-07 v1 Superconductivity

Abstract

We report the doping-induced antiferromagnetic state and Fermi liquid state that are connected by a superconducting region in a series of CeIrIn5x_{5-x}Hgx_x, CeIrIn5x_{5-x}Snx_x and CeIr1x_{1-x}Ptx_xIn5_5 single crystals. Measurements of the specific heat C(T)C(T) and electrical resistivity ρ(T)\rho(T) demonstrate that hole doping via Hg/In substitution gives rise to an antiferromagnetic ground state, but substitutions of In by Sn or Ir by Pt (electron doping) favor a paramagnetic Fermi liquid state. A cone-like non-Fermi liquid region is observed near CeIrIn5_5, showing a diverging effective mass on the slightly Hg-doped side. The obtained temperature-doping phase diagram suggests that CeIrIn5_5 is in proximity to an antiferromagnetic quantum critical point, and heavy fermion superconductivity in this compound is mediated by magnetic quantum fluctuations rather than by valence fluctuations.

Keywords

Cite

@article{arxiv.1312.4276,
  title  = {CeIrIn5: Superconductivity on a Magnetic Instability},
  author = {T. Shang and R. E. Baumbach and K. Gofryk and F. Ronning and Z. F. Weng and J. L. Zhang and X. Lu and E. D. Bauer and J. D. Thompson and H. Q. Yuan},
  journal= {arXiv preprint arXiv:1312.4276},
  year   = {2014}
}

Comments

5pages, 5figures

R2 v1 2026-06-22T02:28:12.533Z