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Models and Methods of High-Tc Superconductivity: Some Frontal Aspects Volume 2. Volume 242
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Editors: Srivastava, J.K. (Tata Institute of Fundamental Research, India) ; Rao, S. M. (National Tsing Hua University, Taiwan)
Book Description:
The articles contain papers, extended papers and reviews, and thus vary in length and are useful for all kinds of audience. They describe, as the book’s name suggests, HTSC models and methodologies. Physical models (like extended BCS model, bipolaron model, spin bag model, RVB (resonating valence bond) model, preformed Cooper pairs and antiferromagnetic spin fluctuation (AFSF) based models, stripe phase, paired cluster (spin glass (SG) frustration based) model, Kamimura-Suwa (Hund’s coupling mechanism based) model, electron-plasmon interaction, electron-phonon interaction, etc.), theoretical methods (methodologies)(like generalised BCS- Migdal-Eliashberg theory, Hubbard model, t- J model, t- t'- U model, Hubbard-Holstein model, Fermi-, non Fermi-and marginal Fermi- liquid concepts, generalised Hartree- Fock formalism, etc.) and, experimental status and methodologies are all described there. For comparison with cuprates, fullerenes, ruthenates, organic-, non Cu-containing oxide-and conventional (elemental, A15)-superconductors, molecular crystals, nickelates, manganites, borides etc. are also discussed.

Table of Contents:
Preface; Chapter 1: Introductory Chapter (J. K. Srivastava, Tata Institute of Fundamental Research, India and S. M. Rao, National Tsing Hua University, Taiwan); Chapter 2: On the Kamimura - Suwa Model: Coexistence of the Hund’s Coupling Triplet and the Zhang - Rice Singlet in the Metallic State of Cuprates (H. Kamimura and T. Hamada, Science University of Tokyo, Japan); Chapter 3: Extended Eliashberg Theory For D - Wave Superconductivity and Application to Cuprates (E. Schachinger, Technische Universität Graz, Austria; and J. P. Carbotte, McMaster University, Canada); Chapter 4: The Generalized Hartree - Fock Theory of Isotropic High Temperature Superconductivity (M. Dayan, Ben- Gurion University, Israel); Chapter 5: Gap Symmetries in the Hubbard Models (J. D. Fan, JD Duz Institute for Superconductivity, Baton Rouge, Louisiana; Y. M. Malozovsky, Southern University and A & M College, Louisiana); Chapter 6: Models for Strongly Interacting Fermion Systems (V. A. Moskalenko and N. B. Perkins, Joint Institute for Nuclear Research, Russia; P. Entel, Gerhard - Mercator University, Germany; D. F. Digor, Moldova Academy of Sciences, Moldova; M. Marinaro, Università degli Studi di Salerno, Italy); Chapter 7: Extension of BCS Superconducting Theory (L. Xu and S. Wang, Nanjing University; Z. Shu, Jiangsu TV University, People’s Republic of China); Chapter 8: Single Crystal Methodology of High - Tc Superconductivity - Some New Results (S. M. Rao and M. K. Wu, National Tsing Hua University, Taiwan; J. K. Srivastava); Chapter 9: Critical Temperature and Energy Gap in Superconductors with Singularities in the Density of States (DOS) (S. Takács, Institute of Electrical Engineering, Slovakia); Chapter 10: Dynamic Stripes, RVB Spin Liquid and High Tc Superconductivity - A Game of Two Players (W. Zheng, J. Hu and C. Wu, Stanford University); Chapter 11: Overview of the Theory of the Superconductivity of Bipolarons (D. Emin, University of New Mexico); Chapter 12: Microscopic Models for a Marginal Fermi Liquid Behavior (S. Charfi - Kaddour and R. Bennaceur, Faculté des Sciences de Tunis, Tunisia; M. Héritier, Centre Scientifique d’Orsay, France); Index.

      Horizons in World Physics
   Binding: Hardcover
   Pub. Date: 2003
   ISBN: 1-59033-667-4
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Models and Methods of High-Tc Superconductivity: Some Frontal Aspects Volume 2. Volume 242