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Multiple phases with intertwined magnetic and superconducting orders in Nd-doped CeCoIn5

  • Duk Y. Kim
  • , Shi Zeng Lin
  • , Franziska Weickert
  • , P. F.S. Rosa
  • , Eric D. Bauer
  • , Filip Ronning
  • , J. D. Thompson
  • , Roman Movshovich

Research output: Contribution to journalArticlepeer-review

Abstract

The thermal conductivity of heavy-fermion superconductor Ce0.95Nd0.05CoIn5 was measured with a magnetic field rotating in the tetragonal a-b plane. The thermal conductivity exhibits a step within the high-field low-temperature (HFLT) phase, which exists above 8 Tesla within the superconducting state, when field is rotated through the antinodal [100] direction of the superconducting d-wave order parameter. This anomaly indicates the presence of a third order parameter within the HFLT phase, similar to that of pure CeCoIn5. Therefore, the HFLT state with triply intertwined orders, i.e., superconducting d-wave, magnetic spin-density wave (SDW), and a putative superconducting p-wave pair-density wave (PDW), is robust against 5% Nd doping. The second magnetic phase within the superconducting state below 8 Tesla, a low-field SDW, displays a hysteresis in thermal conductivity as a function of field magnitude, which is also revealing the existence of a third order consistent with a p-wave PDW. Given different origins and properties of the HFLT and low-field SDW states, the presence of three intertwined orders in both phases is remarkable and of far-reaching consequences.

Original languageEnglish
Article number245120
JournalPhysical Review B - Condensed Matter and Materials Physics
Volume97
Issue number24
DOIs
StatePublished - Jun 13 2018

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