Multiband superconductivity and penetration depth in PrOs4Sb12

The effective superconducting penetration depth measured in the vortex state of PrOs4Sb12 using transverse-field muon spin rotation (TF-muSR) exhibits an activated temperature dependence at low temperatures, consistent with a nonzero gap for quasiparticle excitations. In contrast, Meissner-state rad...

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Veröffentlicht in:arXiv.org 2007-06
Hauptverfasser: MacLaughlin, D E, Shu, Lei, Heffner, R H, Sonier, J E, Callaghan, F D, Morris, G D, Bernal, O O, Yuhasz, W M, Frederick, N A, Maple, M B
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Sprache:eng
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Zusammenfassung:The effective superconducting penetration depth measured in the vortex state of PrOs4Sb12 using transverse-field muon spin rotation (TF-muSR) exhibits an activated temperature dependence at low temperatures, consistent with a nonzero gap for quasiparticle excitations. In contrast, Meissner-state radiofrequency (rf) inductive measurements of the penetration depth yield a T^2 temperature dependence, suggestive of point nodes in the gap. A scenario based on the recent discovery of extreme two-band superconductivity in PrOs4Sb12 is proposed to resolve this difference. In this picture a large difference between large- and small-gap coherence lengths renders the field distribution in the vortex state controlled mainly by supercurrents from a fully-gapped large-gap band. In zero field all bands contribute, yielding a stronger temperature dependence to the rf inductive measurements.
ISSN:2331-8422
DOI:10.48550/arxiv.0706.0439