Abstract
We have measured the temperature dependence and magnitude of the superfluid density ρs (T) via the magnetic field penetration depth λ (T) in PuCo Ga5 (nominal critical temperature Tc0 =18.5 K) using the muon spin rotation technique in order to investigate the symmetry of the order parameter, and to study the effects of aging on the superconducting properties of a radioactive material. The same single crystals were measured after 25 days (Tc =18.25 K) and 400 days (Tc =15.0 K) of aging at room temperature. Penetration depths λ (0) =265 (5) and ≥498 (10) nm are derived for the fresh and aged samples, respectively. The temperature dependence of the superfluid density ρs (T) ρs (0) =λ (0)2 λ (T)2 is well described in both materials by a model using d -wave gap symmetry. Within the context of a strong-coupling dirty d -wave model a zero-temperature gap value Δ0 =3.0 kB Tc0 is obtained in the fresh sample for a scattering rate Γ=0.005π kB Tc0, which is consistent with Abrikosov-Gor'kov (AG) pair-breaking theory. This Δ0 should be compared to the weak-coupling value for a clean d -wave gap Δ0 =2.14 kB Tc0. In the aged sample the same model yields Δ0 =2.4 kB Tc0 for Γ=0.010π kB Tc0. This value of Γ is much less than required by the AG pair-breaking formalism. Furthermore, the aged ρs (0) is reduced by at least 70% compared to the fresh sample, which is also incompatible with Δ Tc Tc0 ∼20%, according to AG theory. We conclude that the data in aged PuCo Ga5 support the postulate that the scattering from radiation-induced defects is not in the limit of the AG theory of an order parameter which is spatially averaged over impurity sites, but rather in the limit of short-coherence-length superconductivity. We show that a model calculation consistent with this assumption fits ρs (T) in the aged sample rather well.
| Original language | English |
|---|---|
| Article number | 064504 |
| Journal | Physical Review B - Condensed Matter and Materials Physics |
| Volume | 76 |
| Issue number | 6 |
| DOIs | |
| State | Published - Aug 6 2007 |
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