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The BCS Theory
Magnetic Properties of Type I Superconductors
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Abrikosov applied field approximation average BCS theory behavior calculation circuit coherence factors computed conductivity constant Cooper pair core corresponding critical current critical field current density curve diamagnetism difference discussion dissipation effect electrodynamics electrons example excitations experimental exponential Fermi finite fluctuations flux creep fluxoid free energy frequency function gapless Gennes Ginzburg-Landau Ginzburg-Landau theory given gives integration interaction intermediate Josephson Josephson effect leads limit linearized London equation magnetic field Maxwell equation measurements microscopic theory nonlocal normal metal Note operators pair pair-breaking parameter particles penetration depth phase phonon Phys pinning Pippard qualitative quantitative quantum quasi-particle reduced relation resistance result sample scattering simple solution SQUID supercon superconducting supercurrent surface temperature dependence term thermal thermodynamic thickness thin films Tinkham tion transition tunneling type II superconductors typical variation vector potential velocity voltage vortex vortices wavefunction wire zero