Literature DB >> 30608781

Time-Reversal Symmetry Breaking in Re-Based Superconductors.

T Shang1,2,3, M Smidman4, S K Ghosh5, C Baines6, L J Chang7, D J Gawryluk1, J A T Barker6, R P Singh8, D McK Paul9, G Balakrishnan9, E Pomjakushina1, M Shi2, M Medarde1, A D Hillier10, H Q Yuan4,11, J Quintanilla5, J Mesot3,12,13, T Shiroka12,13.   

Abstract

To trace the origin of time-reversal symmetry breaking (TRSB) in Re-based superconductors, we performed comparative muon-spin rotation and relaxation (μSR) studies of superconducting noncentrosymmetric Re_{0.82}Nb_{0.18} (T_{c}=8.8  K) and centrosymmetric Re (T_{c}=2.7  K). In Re_{0.82}Nb_{0.18}, the low-temperature superfluid density and the electronic specific heat evidence a fully gapped superconducting state, whose enhanced gap magnitude and specific-heat discontinuity suggest a moderately strong electron-phonon coupling. In both Re_{0.82}Nb_{0.18} and pure Re, the spontaneous magnetic fields revealed by zero-field μSR below T_{c} indicate time-reversal symmetry breaking and thus unconventional superconductivity. The concomitant occurrence of TRSB in centrosymmetric Re and noncentrosymmetric ReT (T=transition metal), yet its preservation in the isostructural noncentrosymmetric superconductors Mg_{10}Ir_{19}B_{16} and Nb_{0.5}Os_{0.5}, strongly suggests that the local electronic structure of Re is crucial for understanding the TRSB superconducting state in Re and ReT. We discuss the superconducting order parameter symmetries that are compatible with the experimental observations.

Entities:  

Year:  2018        PMID: 30608781     DOI: 10.1103/PhysRevLett.121.257002

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

1.  Unsplit superconducting and time reversal symmetry breaking transitions in Sr2RuO4 under hydrostatic pressure and disorder.

Authors:  Vadim Grinenko; Debarchan Das; Ritu Gupta; Bastian Zinkl; Naoki Kikugawa; Yoshiteru Maeno; Clifford W Hicks; Hans-Henning Klauss; Manfred Sigrist; Rustem Khasanov
Journal:  Nat Commun       Date:  2021-06-24       Impact factor: 14.919

  1 in total

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