Theory of Copper Oxide Superconductors
Details
This is an advanced textbook for graduate students and researchers wishing to learn about high temperature superconductivity in copper oxides, in particular the Kamimura-Suwa (K-S) model. Because a number of models have been proposed since the discovery of high temperature superconductivity by Bednorz and Müller in 1986, the book first explains briefly the historical development that led to the K-S model. It then focuses on the physical background necessary to understand the K-S model and on the basic principles behind various physical phenomena such as electronic structures, electrical, thermal and optical properties, and the mechanism of high temperature superconductivity.
Elucidates an important model for understanding high-Tc superconductivity in copper oxides
Inhalt
Experimental Results of High Temperature Superconducting Cuprates.- Brief Review of Models of High-Temperature Superconducting Cuprates.- Cluster Models for Hole-Doped CuO6 Octahedron and CuO5 Pyramid.- MCSCF-CI Method: Its Application to a CuO6 Octahedron Embedded in LSCO.- Calculated Results of a Hole-Doped CuO5 Pyramid in YBa2Cu3O7??.- Electronic Structure of a CuO5 Pyramid in Bi2Sr2CaCu2O8+?.- The KamimuraSuwa (K-S) Model: Electronic Structure of Underdoped Cuprates.- Exact Diagonalization Method to Solve the KS Hamiltonian.- Mean-Field Approximation for the KS Hamiltonian.- Calculated Results of Many-Electrons Band Structures and Fermi Surfaces.- Normal State Properties of La2?xSrxCuO4.- ElectronPhonon Interaction and ElectronPhonon Spectral Functions.- Mechanism of High Temperature Superconductivity.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783642064340
- Auflage Softcover reprint of hardcover 1st edition 2005
- Sprache Englisch
- Genre Maschinenbau
- Lesemotiv Verstehen
- Anzahl Seiten 228
- Größe H235mm x B155mm x T13mm
- Jahr 2010
- EAN 9783642064340
- Format Kartonierter Einband
- ISBN 3642064345
- Veröffentlichung 14.10.2010
- Titel Theory of Copper Oxide Superconductors
- Autor Hiroshi Kamimura , Tsuyoshi Hamada , Shunichi Matsuno , Hideki Ushio
- Gewicht 353g
- Herausgeber Springer Berlin Heidelberg