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Critical currents and superconductivity: ferromagnetism coexistence in high-Tc oxides

The book comprises six chapters which deal with the critical currents and the ferromagnetism-superconductivity coexistence in high-Tc oxides. It begins by gathering key data for superconducting state and the fundamental properties of the conventional superconductors, followed by a recap of the basic...

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Autor principal: Khene, Samir
Lenguaje:eng
Publicado: CRC Press 2016
Materias:
Acceso en línea:http://cds.cern.ch/record/2211710
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author Khene, Samir
author_facet Khene, Samir
author_sort Khene, Samir
collection CERN
description The book comprises six chapters which deal with the critical currents and the ferromagnetism-superconductivity coexistence in high-Tc oxides. It begins by gathering key data for superconducting state and the fundamental properties of the conventional superconductors, followed by a recap of the basic theories of superconductivity. It then discusses the differences introduced by the structural anisotropy on the Ginzburg-Landau approach and the Lawrence-Doniach model before addressing the dynamics of vortices and the ferromagnetism-superconductivity coexistence in high-Tc oxides, and provides an outline of the pinning phenomena of vortices in these materials, in particular the pinning of vortices by the spins. It elucidates the methods to improve the properties of superconducting materials for industrial applications. This optimization aims at obtaining critical temperatures and densities of critical currents at the maximum level possible. Whereas the primary objective is the basic mechanisms pushing the superconductivity towards high temperatures, the secondary objective is to achieve a better understanding of the vortices pinning. This book is targeted at researchers and graduate students of fundamental and engineering sciences.
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spelling cern-22117102021-04-21T19:33:01Zhttp://cds.cern.ch/record/2211710engKhene, SamirCritical currents and superconductivity: ferromagnetism coexistence in high-Tc oxidesOther Fields of PhysicsThe book comprises six chapters which deal with the critical currents and the ferromagnetism-superconductivity coexistence in high-Tc oxides. It begins by gathering key data for superconducting state and the fundamental properties of the conventional superconductors, followed by a recap of the basic theories of superconductivity. It then discusses the differences introduced by the structural anisotropy on the Ginzburg-Landau approach and the Lawrence-Doniach model before addressing the dynamics of vortices and the ferromagnetism-superconductivity coexistence in high-Tc oxides, and provides an outline of the pinning phenomena of vortices in these materials, in particular the pinning of vortices by the spins. It elucidates the methods to improve the properties of superconducting materials for industrial applications. This optimization aims at obtaining critical temperatures and densities of critical currents at the maximum level possible. Whereas the primary objective is the basic mechanisms pushing the superconductivity towards high temperatures, the secondary objective is to achieve a better understanding of the vortices pinning. This book is targeted at researchers and graduate students of fundamental and engineering sciences.CRC Pressoai:cds.cern.ch:22117102016
spellingShingle Other Fields of Physics
Khene, Samir
Critical currents and superconductivity: ferromagnetism coexistence in high-Tc oxides
title Critical currents and superconductivity: ferromagnetism coexistence in high-Tc oxides
title_full Critical currents and superconductivity: ferromagnetism coexistence in high-Tc oxides
title_fullStr Critical currents and superconductivity: ferromagnetism coexistence in high-Tc oxides
title_full_unstemmed Critical currents and superconductivity: ferromagnetism coexistence in high-Tc oxides
title_short Critical currents and superconductivity: ferromagnetism coexistence in high-Tc oxides
title_sort critical currents and superconductivity: ferromagnetism coexistence in high-tc oxides
topic Other Fields of Physics
url http://cds.cern.ch/record/2211710
work_keys_str_mv AT khenesamir criticalcurrentsandsuperconductivityferromagnetismcoexistenceinhightcoxides