
In the present work we study the effect that the metallic quality of the contacts by which an external current is applied, has on the magnetic properties of a superconducting sample. We analyze the magnetization, magnetic susceptibility, Cooper pair density as applied magnetic field function. The contacts are simulated using the
Vortex state, Critical current, Superconductivity, Biomedical Engineering, FOS: Physical sciences, Geometry, Pinning force, magnetization, FOS: Medical engineering, Mechanics, Magnetization, Quantum mechanics, Lorentz force, ginzburg landau, superconductor, Engineering, Quantum Effects in Helium Nanodroplets and Solids, FOS: Mathematics, Development of Superconducting Magnets for Particle Accelerators and Fusion Reactors, Cooper pair, Classical mechanics, Rectangle, Vortex Dynamics, Physics, High-Temperature Superconductivity, Engineering (General). Civil engineering (General), Condensed Matter Physics, Condensed matter physics, Atomic and Molecular Physics, and Optics, Magnetic field, Physics and Astronomy, mesoscopics, Physical Sciences, Lorentz transformation, Anisotropy, TA1-2040, Type-II superconductor, Vortex, Mathematics
Vortex state, Critical current, Superconductivity, Biomedical Engineering, FOS: Physical sciences, Geometry, Pinning force, magnetization, FOS: Medical engineering, Mechanics, Magnetization, Quantum mechanics, Lorentz force, ginzburg landau, superconductor, Engineering, Quantum Effects in Helium Nanodroplets and Solids, FOS: Mathematics, Development of Superconducting Magnets for Particle Accelerators and Fusion Reactors, Cooper pair, Classical mechanics, Rectangle, Vortex Dynamics, Physics, High-Temperature Superconductivity, Engineering (General). Civil engineering (General), Condensed Matter Physics, Condensed matter physics, Atomic and Molecular Physics, and Optics, Magnetic field, Physics and Astronomy, mesoscopics, Physical Sciences, Lorentz transformation, Anisotropy, TA1-2040, Type-II superconductor, Vortex, Mathematics
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