0000000000133888

AUTHOR

Sandro Pace

showing 2 related works from this author

Low-field diamagnetic response of granular superconductors at finite temperatures

1994

We study the low-field diamagnetic response of granular superconductors at finite temperatures by means of a simple two-dimensional Josephson-junction array. The temperature effects are taken into account by inserting white-noise current sources in parallel to the resistively shunted junction circuit models of the Josephson junctions of the network. By this analysis we argue that a simplified one-dimensional description of the equivalent circuit, proposed by the authors for cylindrical granular superconductors, is still valid even in the presence of thermally activated flux jumps. A flux-creep picture for intergranular flux motion follows.

SuperconductivityJosephson effectPhysicsCondensed matter physicsField (physics)MagnetismCondensed Matter::SuperconductivityEquivalent circuitDiamagnetismGranular materialMagnetic flux
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Competition between intrinsic and extrinsic effects in the quenching of the superconducting state in FeSeTe thin films

2015

We report the first experimental observation of the quenching of the superconducting state in current-voltage characteristics of an iron-based superconductor, namely, in FeSeTe thin films. Based on available theoretical models, our analysis suggests the presence of an intrinsic flux-flow electronic instability along with non-negligible extrinsic thermal effects. The coexistence and competition of these two mechanisms classify the observed instability as halfway between those of low-temperature and of high-temperature superconductors, where thermal effects are respectively largely negligible or predominant.

QuenchingSuperconductivityMaterials scienceCondensed matter physicsCondensed Matter - SuperconductivityTheoretical modelsFOS: Physical sciences02 engineering and technologySUPERCONDUTTIVITA'021001 nanoscience & nanotechnology01 natural sciencesInstabilitySuperconductivity (cond-mat.supr-con)Condensed Matter::Superconductivity0103 physical sciencesThermalThin film010306 general physics0210 nano-technology
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