Orientational Dependence of the Flux-Flow Resistivity and Critical Current Density in Type-II Superconducting Foils
Author:
Publisher
American Physical Society (APS)
Subject
General Physics and Astronomy
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRev.168.413/fulltext
Reference21 articles.
1. Direct Evidence of Steady EMF Induced by Flux Motion in Superconductors
2. Magnetic Coupling Between Two Adjacent Type-II Superconductors
3. Voltage Associated with the Coupled Motion of Flux in Type-I Superconductors
4. Dissipative Mechanism in Type-II Superconductors
5. Flux-Flow Resistance in Type-II Superconductors
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1. Anisotropy of perpendicular field penetration into high-Tc superconductors induced by strong longitudinal field;Physica C: Superconductivity;1994-06
2. Study of the barrier against flux exit from type II superconductors;Cryogenics;1981-08
3. Critical Currents in NbSe2: Evidence for Surface Pinning;Canadian Journal of Physics;1972-11-15
4. Experimental evidence for surface pinning by defects in superconducting niobium crystals;Philosophical Magazine;1972-10
5. A model of surface flux line pinning in type II superconductors;Philosophical Magazine;1972-10
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