High-Temperature Cuprate Superconductors : Experiment, Theory, and Applications
High-Temperature Cuprate Superconductors provides an up-to-date and comprehensive review of the properties of these fascinating materials. The essential properties of high-temperature cuprate superconductors are reviewed on the background of their theoretical interpretation. The experimental results...
Enregistré dans:
| Auteur principal: | |
|---|---|
| Format: | Livre numérique |
| Langue: | Anglais |
| Publié: |
Berlin, Heidelberg :
Springer Berlin Heidelberg : Springer e-books
[20..].
Cham : Springer Nature |
| Collection: | Springer Series in Solid-State Sciences
166 |
| Accès en ligne: | Accès sur la plateforme de l'éditeur Accès sur la plateforme Istex Accès Université d'Orléans Accès INSA CVL |
| Note: |
Archives Springer e-books (Licence nationale) Archives Springer e-books (Licence nationale) |
| Autres localisations: | Voir dans le Sudoc |
| Edition sous un autre format: | • High-Temperature Cuprate Superconductors, Experiment, Theory, and Applications, Nikolay Plakida, Heidelberg, Springer, 2010, 1 vol. (X-570 p.), Springer Series in Solid-State Sciences, 978-3-642-12632-1 |
Table des matières:
- 1. Introduction 2. Crystal Structure 3. Antiferromagnetism in Cuprate Superconductors 4. Thermodynamic Properties of Cuprate Superconductors 5. Electronic Properties of Cuprate Superconductors 6. Lattice Dynamics and Electron-Phonon Interaction 7. Theoretical Models of High-Tc Superconductivity 8. Applications 8.3 Conclusion Thermodynamic Green Functions in Superconductivity Theory A.1 Thermodynamic Green Functions A.1.1 Green Function Definition A.1.2 Spectral Representation A.1.3 Sum Rules and Symmetry Relations A.2 Eliashberg Equations for Fermion-Boson Models A.2.1 Dyson Equation A.2.2 Non-Crossing Approximation A.3 Superconductivity in the Hubbard Model A.3.1 Dyson Equation A.3.2 Mean-Field Approximation A.3.3 Self-energy Operator A.4 Superconductivity in the t-J Model References

