First vortex entry into a perpendicularly magnetized superconducting thin film

In type-II superconductors, the flux-free state (Meissner state) may be invaded by vortices bearing quantized flux once H is above the lower critical field Hc1. However, the actual first flux penetration does not occur at Hc1 due to the presence of a surface barrier and the fact that the Meissner st...

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Veröffentlicht in:Physical Review B, Condensed Matter and Materials Physics Condensed Matter and Materials Physics, 2013, Vol.88 (18)
Hauptverfasser: Gutierrez Royo, Joffre, Raes, B, Van de Vondel, Joris, Silhanek, A.V, Kramer, R.B.G, Ataklti, G.W, Moshchalkov, Victor
Format: Artikel
Sprache:eng
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Zusammenfassung:In type-II superconductors, the flux-free state (Meissner state) may be invaded by vortices bearing quantized flux once H is above the lower critical field Hc1. However, the actual first flux penetration does not occur at Hc1 due to the presence of a surface barrier and the fact that the Meissner state may also exist as a metastable state up to a larger (superheating) field. In this work we determine the field for the first vortex penetration in superconductors by directly imaging the first vortex threading a superconducting Pb film with antidots. We find that the first vortex penetration occurs when the surface superconducting currents reach the depairing current, locally breaking superconductivity and allowing a vortex to nucleate.
ISSN:2469-9950