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Possible multigap Type-I superconductivity in the layered Boride RuB$_2$

Superconductivity 2018-02-14 v1 Materials Science Strongly Correlated Electrons

Abstract

The structure of the layered transition-metal Borides AAB2_2 (A=A = Os, Ru) is built up by alternating TT and B layers with the B layers forming a puckered honeycomb. Here we report superconducting properties of RuB2_2 with a Tc1.5T_c \approx 1.5K using measurements of the magnetic susceptibility versus temperature TT, magnetization MM versus magnetic field HH, resistivity versus TT, and heat capacity versus TT at various HH. We observe a reduced heat capacity anomaly at TcT_c given by ΔC/γTc1.1\Delta C/\gamma T_c \approx 1.1 suggesting multi-gap superconductivity. Strong support for this is obtained by the successful fitting of the electronic specific heat data to a two-gap model with gap values Δ1/kBTc1.88\Delta_1/k_BT_c \approx 1.88 and Δ2/kBTc1.13\Delta_2/k_BT_c \approx 1.13. Additionally, MM versus HH measurements reveal a behaviour consistent with Type-I superconductivity. This is confirmed by estimates of the Ginzburg-Landau parameter κ0.1\kappa \approx 0.1--0.660.66. These results strongly suggest multi-gap Type-I superconductivity in RuB2_2. We also calculate the band structure and obtain the Fermi surface for RuB2_2. The Fermi surface consists of one quasi-two-dimensional sheet and two nested ellipsoidal sheets very similar to OsB2_2. An additional small 4th4^{\rm th} sheet is also found for RuB2_2. RuB2_2 could thus be a rare example of a multi-gap Type-I superconductor.

Keywords

Cite

@article{arxiv.1709.06954,
  title  = {Possible multigap Type-I superconductivity in the layered Boride RuB$_2$},
  author = {Jaskaran Singh and Anooja Jayaraj and D. Srivastava and S. Gayen and A. Thamizhavel and Yogesh Singh},
  journal= {arXiv preprint arXiv:1709.06954},
  year   = {2018}
}

Comments

8 pages, 8 figures

R2 v1 2026-06-22T21:49:38.636Z