Vortices in superconducting bulk, films and SQUIDs |
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Authors: | Ernst Helmut Brandt |
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Affiliation: | (1) Max-Planck-Institut für Metallforschung, D-70506 Stuttgart, Germany |
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Abstract: | The properties of the ideal periodic vortex lattice in bulk superconductors and in films of any thickness can be calculated from Ginzburg-Landau theory by an iteration method using Fourier series. The London theory yields general analytic expressions for the magnetic field and energy of arbitrary arrangements of straight or curved vortex lines. The elasticity of the vortex lattice is highly nonlocal. The magnetic response of superconductors of realistic shapes like thin and thick strips and disks or thin rectangular plates or films, containing pinned vortices, can be computed within continuum theory by solving an integral equation. A useful example is a thin square with a central hole and a radial slit, used as superconducting quantum interference device (SQUID). |
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Keywords: | Superconductors vortices elasticity pinning |
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