English

Weak Interband-Coupling Superconductivity in the Filled Skutterudite LaPt4Ge12

Superconductivity 2015-12-18 v1 Strongly Correlated Electrons

Abstract

The superconducting pairing state of LaPt4_{4}Ge12_{12} is studied by measuring the magnetic penetration depth λ(T,B)\lambda(T,B) and the superfluid density ρs(T)\rho_s(T) using a tunnel-diode-oscillator (TDO)-based method and by transverse field muon-spin rotation (μ\muSR) spectroscopy. λ(T)\lambda(T) follows an exponential-type temperature dependence at TTcT\ll T_{c}, but its zero-temperature value λ(0)\lambda(0) increases linearly with magnetic field. Detailed analyses demonstrate that both λ(T)\lambda(T) and the corresponding ρs(T)\rho_{s}(T), measured in the Meissner state by the TDO method are well described by a two-gap γ\gamma model with gap sizes of Δ1(0)=1.31kBTc\Delta_1(0)=1.31k_{B}T_c and Δ2(0)=1.80kBTc\Delta_2(0)=1.80k_{B}T_c and a very weak interband coupling. In contrast, ρs(T)\rho_s(T), derived from the μSR\mu \rm{SR} data taken in a small field, can be fitted by a single-gap BCS model with a gap close to Δ2(0)\Delta_2(0). We conclude that LaPt4_{4}Ge12_{12} is a marginal two-gap superconductor and the small gap Δ1\Delta_1 seems to be destroyed by a small magnetic field. In comparison, in PrPt4_4Ge12_{12} the 4f4f-electrons may enhance the interband coupling and, therefore, give rise to more robust multiband superconductivity.

Keywords

Cite

@article{arxiv.1509.01084,
  title  = {Weak Interband-Coupling Superconductivity in the Filled Skutterudite LaPt4Ge12},
  author = {J. L. Zhang and G. M. Pang and L. Jiao and M. Nicklas and Y. Chen and Z. F. Weng and W. Schnelle and A. Leithe-Jasper and A. Maisuradze and C. Baines and R. Khasanov and A. Amato and F. Steglich and R. Gumeniuk and H. Q. Yuan},
  journal= {arXiv preprint arXiv:1509.01084},
  year   = {2015}
}

Comments

5 pages, 4 figures

R2 v1 2026-06-22T10:48:23.343Z