Flux pinning and scaling laws for superconducting V3Ga
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.344153
Reference18 articles.
1. Hysteresis in Superconducting Alloys—Temperature and Field Dependence of Dislocation Pinning in Niobium Alloys
2. A detailed investigation of the E-J characteristic and the role of defect motion within the flux-line lattice for high-current-density, high-field superconducting compounds with particular reference to data on NbSN throughout its entire field-temperature phase space
3. Analysis of the general structure of the EI characteristic of high current superconductors with particular reference to a NbTi SRM wire
4. A new apparatus for measuring the critical currents of hard type-II superconductive wires and tapes in high fields as a function of temperature throughout their superconducting phase
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1. A scaling law for the critical current density of weakly- and strongly-coupled superconductors, used to parameterize data from a technological Nb3Sn strand;Superconductor Science and Technology;2003-08-15
2. Introduction to section D2;Handbook of Superconducting Materials;2002-12
3. Core pinning by intragranular nanoprecipitates in polycrystallineMgCNi3;Physical Review B;2002-06-04
4. The strain and temperature scaling law for the critical current density of a jelly-roll Nb3Al strand in high magnetic fields;Superconductor Science and Technology;2002-05-10
5. The unified strain and temperature scaling law for the pinning force density of bronze-route Nb3Sn wires in high magnetic fields;Cryogenics;2002-05
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