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Electromagnetic dimensions unveiled: High-temperature superconductors and their magnetic interplay, a comprehensive approach

International Journal of Advanced Academic Studies · 2023 · Vol. 5(11) · pp. 18–20

Abstract

High-temperature superconductors (hereinafter referred to as HTS) have revolutionized the field of condensed matter physics with their promise of lossless electrical transmission and transformative technological applications. This comprehensive study explores the electromagnetic dimensions of HTS materials, with a particular focus on their magnetic interplay. We provide an overview of the fundamentals of HTS materials, examine their magnetic behavior, discuss experimental techniques for studying magnetic properties, and explore potential applications. By uncovering the intricacies of HTS materials, we aim to contribute to the optimization of their performance and the advancement of their applications. High-temperature superconductors represent a cutting-edge field of research with the potential to reshape numerous industries. While their superconducting properties have been well-established, the complex interplay between these materials and magnetic fields presents challenges that researchers are actively addressing. The applications of HTS materials in power transmission, medical diagnostics, quantum computing, transportation, and energy storage hold great promise, and further advancements in this field are eagerly awaited. As we continue to unveil the electromagnetic dimensions of high-temperature superconductors, the future looks bright for a world powered by superconducting technology.

Physics of Superconductivity and MagnetismMagnetic and transport properties of perovskites and related materialsIron-based superconductors researchSuperconductivityEngineering physicsTransformative learningNanotechnologyField (mathematics)High-temperature superconductivityPhysicsComputer scienceMaterials scienceCondensed matter physics
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References
Review of maglev train technologies
IEEE Transactions on Magnetics · 2006 · 912 citations
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