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Fluxoid quantization effects in superconducting mesoscopic Al multiloop structures
28
Citations
21
References
1996
Year
Quantum ScienceSuperconducting MaterialHigh-tc SuperconductivityMesoscopic AlEngineeringPhysicsNovel SuperconductorsNatural SciencesApplied PhysicsCondensed Matter PhysicsQuantum MaterialsSuperconductivityHigh Tc SuperconductorsFluxoid Quantization EffectsSquare LoopsQuantum MatterSuperconducting DevicesCondensed Matter Theory
We have studied fluxoid quantization effects in mesoscopic Al samples consisting of a small number of square loops. In short microladders a pronounced substructure of the Little-Parks oscillations (i.e. the oscillations of the critical temperature Tc as a function of the applied magnetic flux Φ) has been found. These new features in Tc(Φ) originate from transitions between different quantum states, each having a specific order parameter profile and flow pattern of the supercurrents. The experimental data are in excellent agreement with the Tc(Φ) calculated within the de Gennes-Alexander model for superconducting micronetworks.
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