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The pairing symmetry in quasi-one-dimensional superconductor Rb2Mo3As3

Superconductivity 2023-06-28 v1 Strongly Correlated Electrons

Abstract

Quasi-one-dimensional electron systems display intrinsic instability towards long-range ordered phases at sufficiently low temperatures. The superconducting orders are of particular interest as they can possess either singlet or triplet pairing symmetry and frequently compete with magnetism. Here we report on muon spin rotation and relaxation (μ\mathrm{\mu}SR) study of Rb2_2Mo3_3As3_3 characterised by one of the highest critical temperatures Tc=10.4 KT_{\rm c}=10.4\ \mathrm{K} among quasi-one-dimensional superconductors. The transverse-field μ\mathrm{\mu}SR signal shows enhanced damping below TcT_{\rm c} due to the formation of vortex lattice. Comparison of vortex lattice broadening against single gap ss-, pp- and dd-wave models shows the best agreement for the ss-wave scenario but with the anomalously small superconducting gap, Δ0\Delta_0, to TcT_{\rm c} ratio of 2Δ0/kBTc=2.74(1)2\Delta_0/k_{\rm B}T_{\rm c}=2.74(1). The alternative nodal pp-wave or dd-wave scenarios with marginally worse goodness of fit would yield more realistic 2Δ0/kBTc=3.50(2)2\Delta_0/k_{\rm B}T_{\rm c}=3.50(2) and 2Δ0/kBTc=4.08(1)2\Delta_0/k_{\rm B}T_{\rm c}=4.08(1), respectively, and thus they cannot be ruled out when accounting for the superconducting state in Rb2_2Mo3_3As3_3.

Keywords

Cite

@article{arxiv.2302.02763,
  title  = {The pairing symmetry in quasi-one-dimensional superconductor Rb2Mo3As3},
  author = {Žiga Gosar and Tina Arh and Kevin Jaksetič and Andrej Zorko and Wenhao Liu and Hanlin Wu and Chennan Wang and Hubertus Luetkens and Bing Lv and Denis Arčon},
  journal= {arXiv preprint arXiv:2302.02763},
  year   = {2023}
}

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6 pages