The superconducting pairing state of LaPt4Ge12 is studied by measuring the magnetic penetration depth λ(T,B) and the superfluid density ρs(T) using a tunnel-diode-oscillator (TDO)-based method and by transverse field muon-spin rotation (μSR) spectroscopy. λ(T) follows an exponential-type temperature dependence at T≪Tc, but its zero-temperature value λ(0) increases linearly with magnetic field. Detailed analyses demonstrate that both λ(T) and the corresponding ρs(T), measured in the Meissner state by the TDO method are well described by a two-gap γ model with gap sizes of Δ1(0)=1.31kBTc and Δ2(0)=1.80kBTc and a very weak interband coupling. In contrast, ρs(T), derived from the μSR data taken in a small field, can be fitted by a single-gap BCS model with a gap close to Δ2(0). We conclude that LaPt4Ge12 is a marginal two-gap superconductor and the small gap Δ1 seems to be destroyed by a small magnetic field. In comparison, in PrPt4Ge12 the 4f-electrons may enhance the interband coupling and, therefore, give rise to more robust multiband superconductivity.
@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}
}