| In the Memory of Shlomo Alexander | p. 1 |
| Topological Considerations in Superconductivity | p. 3 |
| Introduction | p. 3 |
| Introduction to the Ginzburg-Landau Model | p. 4 |
| Permanent Currents | p. 5 |
| The Little-Parks Paradigm | p. 8 |
| Ginzburg-Landau Model on Graphs | p. 9 |
| The Zero Set | p. 17 |
| Other Problems with Topological Flavor | p. 20 |
| Josephson Junctions | p. 20 |
| Vortex Lines | p. 21 |
| References | p. 21 |
| The de Gennes-Alexander Theory of Superconducting Micronetworks | p. 23 |
| Introduction | p. 23 |
| The Ginzburg-Landau Theory | p. 24 |
| de Gennes-Alexander Linear Approach for Micronetworks | p. 26 |
| Symmetry Analysis in the dGA Theory | p. 30 |
| Some Simple Applications of the dGA Theory to Symmetric Micronetworks | p. 34 |
| The Yin-Yang | p. 34 |
| The Double Yin-Yang | p. 36 |
| Wheatstone Bridge | p. 38 |
| The Basic Triangular Gasket | p. 40 |
| The dGA Theory for Extended Micronetworks | p. 43 |
| Geometrical Properties of Ladder Systems | p. 43 |
| Nodal Equations and Phase Transition Boundaries | p. 46 |
| Nodal Order Parameters | p. 50 |
| Current Distribution near the Phase Transition | p. 52 |
| Some Features of the Ladders | p. 53 |
| Square and Triangular Networks | p. 55 |
| Incommensurate, Fractal and Disordered Systems | p. 57 |
| Beyond de Gennes-Alexander Theory: Inside the Phase Diagram | p. 59 |
| References | p. 61 |
| Nodal Sets, Multiplicity and Superconductivity in Non-simply Connected Domains | p. 63 |
| Zero Sets in Superconductivity | p. 63 |
| Bifurcation from Normal Solutions. Preliminaries | p. 65 |
| The Linear Schrödinger Operator with Magnetic Field | p. 66 |
| The Operator K | p. 67 |
| Bifurcation for Special Spaces | p. 69 |
| The Toy Model | p. 70 |
| Variation of the Ground State Energy | p. 72 |
| Nodal Sets | p. 73 |
| A Twofold Riemannian Covering Manifold | p. 77 |
| About the Multiplicity | p. 79 |
| About the Maximality at Circulation <$>{1 \over 2}<$> | p. 80 |
| The Case of 3 Holes | p. 83 |
| References | p. 84 |
| Connectivity and Flux Confinement Phenomenain Nanostructured Superconductors | p. 87 |
| Introduction | p. 87 |
| Ginzburg-Landau Theory | p. 87 |
| Fluxoid Quantization | p. 88 |
| Type-I Versus Type-II Superconductivity | p. 89 |
| Surface Nucleation of Superconductivity | p. 91 |
| Solution of the Linear GL Equation in Cylindrical Coordinates | p. 94 |
| Connectivity Effects in Bulk Superconductors | p. 96 |
| Nanostructured Superconductors: Single Plaquettes | p. 101 |
| Boundary Conditions | p. 101 |
| `Mesoscopic' Superconductors | p. 102 |
| Nucleation of Superconductivity in a Loop | p. 103 |
| Nucleation of Superconductivity in a Disk | p. 105 |
| Nucleation of Superconductivity Around an Antidot | p. 107 |
| Nucleation of Superconductivity in a Wedge | p. 108 |
| Dimensional Crossover in a Loop of Finite Width | p. 109 |
| Superconducting Micronetworks: Increasing Connectivity by Adding Loops in One Dimension | p. 114 |
| Perforated Microsquares | p. 120 |
| Superconducting Films with an Antidot Lattice | p. 124 |
| Commensurability Effects at Low Magnetic Fields | p. 126 |
| The ¿-enhancement in High Magnetic Fields | p. 131 |
| References | p. 135 |
| Zero Set of the Order Parameter, Especially in Rings | p. 138 |
| Introduction: The Price of Connectivity | p. 138 |
| The de Gennes-Alexander (dGA) Approach | p. 140 |
| One Loop | p. 140 |
| Two Loops | p. 142 |
| Perturbational Approach | p. 142 |
| Uniform Cross Section | p. 144 |
| Weakly Nonuniform Cross Section | p. 144 |
| Rings with Finite Width | p. 147 |
| Order of the Normal-Superconducting Transition | p. 149 |
| Nonuniform Cross Section - Nondegenerate Perturbation | p. 153 |
| Degenerate Perturbation | p. 155 |
| Critical Points | p. 158 |
| Vortices | p. 162 |
| Inhomogeneous Fields | p. 164 |
| Experimental and Numerical Evidence | p. 167 |
| Josephson Junctions | p. 171 |
| Main Conclusions | p. 172 |
| References | p. 173 |
| Persistent Currents in Ginzburg-Landau Models | p. 174 |
| Introduction | p. 174 |
| Onset of Currents - Trapped Fluxes | p. 174 |
| The Transition Temperature | p. 176 |
| The Case of an Annulus | p. 181 |
| General Domains | p. 182 |
| Temperature Below Tc | p. 182 |
| Stability of Currents once the External Field Is Removed | p. 183 |
| Rewriting F | p. 183 |
| Removing hex | p. 183 |
| The Case Where ϵ Is Small | p. 183 |
| The Case Where ϵ Is Not Small | p. 186 |
| References | p. 186 |
| On the Normal/Superconducting Phase Transition in the Presence of Large Magnetic Fields | p. 188 |
| Formulation of the Problem | p. 188 |
| Analysis of Onset in a Disc | p. 190 |
| Analysis of Onset in a General Bounded Domain | p. 194 |
| Rigorous Justification of Boundary Localization | p. 197 |
| Infinite Curvature - Domains with Corners | p. 197 |
| References | p. 198 |
| On the Numerical Solution of the Time-Dependent Ginzburg-Landau Equations in Multiply Connected Domains | p. 200 |
| Introduction | p. 200 |
| Numerical Method | p. 202 |
| Discretization of the TDGL Equations | p. 202 |
| External Boundary Conditions | p. 205 |
| Boundary Conditions at Holes | p. 206 |
| Discretization of the Free Energy | p. 207 |
| Examples | p. 208 |
| Concluding Remarks | p. 212 |
| References | p. 213 |
| Formation of Vortex-Antivortex Pairs | p. 215 |
| Introduction | p. 215 |
| Theoretical Framework for Discussing Defect Formation | p. 216 |
| Conventional Models of Formation of Vortices and Antivortices | p. 217 |
| A New Mechanism of Defect-Antidefect Production | p. 220 |
| Resonant Production of Vortex-Antivortex Pairs | p. 222 |
| Conclusion | p. 228 |
| References | p. 229 |
| The Order Parameter as a Macroscopic Quantum Wavefunction | p. 230 |
| The Free Bose Gas | p. 230 |
| The Interacting Bose Gas | p. 231 |
| Bose Gas with Internal Degrees of Freedom | p. 232 |
| Cooper Pairing: s-Wave Case | p. 233 |
| Cooper Pairs with Internal Degrees of Freedom | p. 236 |
| References | p. 238 |
| The Ehrenberg-Siday-Aharonov-Bohm Effect | p. 239 |
| Introduction | p. 239 |
| The Role of the Electromagnetic Potentials in Quantum Mechanics | p. 239 |
| The Aharonov-Bohm Gedanken Experiments | p. 241 |
| Early Experimental "Verification" | p. 242 |
| Roy's Theorems | p. 242 |
| Crucial Experiments | p. 244 |
| References | p. 246 |
| Connectivity and Superconductivityin Inhomogeneous Structures | p. 248 |
| Introduction | p. 248 |
| The Case of a Normal-Metal/Superconductor Interface | p. 250 |
| Superconducting Networks | p. 252 |
| Granular Superconductors | p. 254 |
| References | p. 255 |
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