Quantum muon diffusion and the preservation of time-reversal symmetry in the superconducting state of type-I rhenium
arXiv:2202.03171 · doi:10.1103/PhysRevB.105.L020503
Abstract
Elemental rhenium exhibiting type-II superconductivity has been previously reported to break time-reversal symmetry in the superconducting state. We have investigated an arc-melted sample of rhenium exhibiting type-I superconductivity. Low temperature zero-field muon-spin relaxation measurements indicate that time-reversal symmetry is preserved in the superconducting state. Muon diffusion is observed, which is due to quantum mechanical tunneling between interstitial sites. The normal state behavior is characterized by the conduction electrons screening the muons and thermal broadening, and is typical for a metal. Energy asymmetries between muon trapping sites and the superconducting energy gap also characterize the superconducting state behavior.
8 pages, 7 figures
References in corpus (14)
- High Resolution Polar Kerr Effect Measurements of Sr2RuO4: Evidence for Broken Time Reversal Symmetry in the Superconducting State
- Evidence for time-reversal symmetry breaking in the non-centrosymmetric superconductor LaNiC
- Observation of broken time-reversal symmetry in the heavy fermion superconductor UPt
- Time-reversal symmetry breaking in noncentrosymmetric superconductor Re6Hf:further evidence for unconventional behaviour in the alpha-Mn family of materials
- Nodeless superconductivity and time-reversal symmetry breaking in the noncentrosymmetric superconductor Re24Ti5
- Broken time-reversal symmetry probed by muon spin relaxation in the caged type superconductor LuRhSn
- Superconducting and normal-state properties of the noncentrosymmetric superconductor Re6Zr
- Comparative study of the centrosymmetric and non-centrosymmetric superconducting phases of Re3W using muon-spin spectroscopy and heat capacity measurements
- Unconventional superconductivity in the cage type compound ScRhSn
- Full-gap superconductivity in non-centrosymmetric ReZr, ReZr and ReZr
- Investigations of the superconducting ground state of ZrIr: Introducing a new noncentrosymmetric superconductor
- Time-reversal symmetry breaking in Re-based superconductors: Recent developments
- Nodeless superconductivity in the centro- and noncentrosymmetric rhenium-boron superconductors
- Evidence for the coexistence of time-reversal symmetry breaking and Bardeen-Cooper-Schrieffer-like superconductivity in LaPd