English

Time-reversal symmetry breaking in Re-based superconductors: Recent developments

Superconductivity 2021-05-26 v1 Materials Science Strongly Correlated Electrons

Abstract

In the recent search for unconventional- and topological superconductivity, noncentrosymmetric superconductors (NCSCs) rank among the most promising candidate materials. Surprisingly, some of them -- especially those containing rhenium -- seem to exhibit also time-reversal symmetry (TRS) breaking in their superconducting state, while TRS is preserved in many other isostructural NCSCs. To date, a satisfactory explanation for such discrepant behavior, albeit crucial for understanding the unconventional superconductivity of these materials, is still missing. Here we review the most recent developments regarding the Re-based class, where the muon-spin relaxation (μ\muSR) technique plays a key role due to its high sensitivity to the weak internal fields associated with the TRS breaking phenomenon. We discuss different cases of Re-containing superconductors, comprising both centrosymmetric- and noncentrosymmetric crystal structures and ranging from pure rhenium, to ReTT (TT = 3dd-5dd early transition metals), to the dilute-Re case of ReBe22_{22}. μ\muSR results suggest that the rhenium presence and its amount are two key factors for the appearance and the extent of TRS breaking in Re-based superconductors. Besides summarizing the existing findings, we also put forward future research ideas regarding the exciting field of materials showing TRS breaking.

Keywords

Cite

@article{arxiv.2105.11600,
  title  = {Time-reversal symmetry breaking in Re-based superconductors: Recent developments},
  author = {T. Shang and T. Shiroka},
  journal= {arXiv preprint arXiv:2105.11600},
  year   = {2021}
}

Comments

12 pages, 4 figures

R2 v1 2026-06-24T02:25:39.558Z