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Possible anisotropic superconducting pairing in cubic ThPt4Ge12

Superconductivity 2009-08-11 v1

Abstract

Transverse-field muon-spin-rotation measurements have been carried out for polycrystalline ThPt4Ge12. The magnetic penetration depth λ\lambda and the superconducting coherence length ξ\xi in the vortex state of this compound were found to be 112(5) nm and 32(2) nm, respectively. We have estimated the effective mass of the quasiparticles m4.6×mem^* \approx 4.6\times m_e, the superfluid carrier density ns1.02×1028n_s \approx 1.02 \times 10^{28} carriers/m3^{3}, and the zero-temperature superconducting gap 0.67 meV, corresponding to the ratio: 2Δ(0)/kBTc\Delta(0)/k_BT_c = 3.76. We found markable difference between the temperature dependence of the vortex state muon-spin relaxation rate ZFC- and FC-σs(T)\sigma_s(T) below the irreversibility temperature TirT_{ir} \sim 2.5 K. Linear field dependence of λ(H)\lambda(H), small ratio Tir/TcT_{ir}/T_c, and power law behavior of the temperature dependencies of λ(T)\lambda(T) seem to be consistent with anisotropic superconducting pairing in the compound studied. The analysis of correlation between the superconducting transition temperature and the effective Fermi temperature within the Uemura classification scheme reveals that ThPt4Ge belongs to the same class of exotic superconductors.

Keywords

Cite

@article{arxiv.0908.1304,
  title  = {Possible anisotropic superconducting pairing in cubic ThPt4Ge12},
  author = {V. H. Tran and A. D. Hillier and D. T. Adroja and D. Kaczorowski},
  journal= {arXiv preprint arXiv:0908.1304},
  year   = {2009}
}
R2 v1 2026-06-21T13:33:58.566Z