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Explores the paradigms, history, alloys, applications, standards, and recent developments of superconductors, highlighting their unique properties and broad utility.
Explores the quantum-mechanical nature of superconductivity, covering basic quantum mechanics, Cooper pair formation, and the energy gap in superconductors.
Explores the operation and applications of Superconducting Quantum Interference Devices, emphasizing their extraordinary resolution and sensitivity to weak magnetic fields.
Explores the transition from spintronics to Majorana states in proximitized materials, focusing on magnetic proximity and topological superconductivity detection.
Delves into vortex behavior in superconductors, focusing on equilibrium density and the critical state, exploring the complex interaction between vortices and pinning sites.