The volume presents, for the very first time, an exhaustive collection of those modern theoretical methods specifically tailored for the analysis of Strongly Correlated Systems. Many novel materials, with functional properties emerging from macroscopic quantum behaviors at the frontier of modern research in physics, chemistry and materials science, belong to this class of systems. Any technique is presented in great detail by its own inventor or by one of the world-wide recognized main contributors. The exposition has a clear pedagogical cut and fully reports on the most relevant case study where the specific technique showed to be very successful in describing and enlightening the puzzling physics of a particular strongly correlated system. The book is intended for advanced graduate students and post-docs in the field as textbook and/or main reference, but also for other researchers in the field who appreciates consulting a single, but comprehensive, source or wishes to get acquainted, in a as painless as possible way, with the working details of a specific technique.
Author(s): Robert O. Jones (auth.), Adolfo Avella, Ferdinando Mancini (eds.)
Series: Springer Series in Solid-State Sciences 171
Edition: 1
Publisher: Springer-Verlag Berlin Heidelberg
Year: 2012
Language: English
Pages: 464
Tags: Solid State Physics;Spectroscopy and Microscopy;Mathematical Methods in Physics
Front Matter....Pages i-xxxi
Density Functional Theory: A Personal View....Pages 1-28
Projected Wavefunctions and High T c Superconductivity in Doped Mott Insulators....Pages 29-64
The Pseudoparticle Approach to Strongly Correlated Electron Systems....Pages 65-101
The Composite Operator Method (COM)....Pages 103-141
LDA+GTB Method for Band Structure Calculations in the Strongly Correlated Materials....Pages 143-171
Projection Operator Method....Pages 173-202
Dynamical Mean-Field Theory....Pages 203-236
Cluster Perturbation Theory....Pages 237-270
Dynamical Cluster Approximation....Pages 271-302
Self-Energy-Functional Theory....Pages 303-339
Cluster Dynamical Mean Field Theory....Pages 341-371
Functional Renormalization Group for Interacting Many-Fermion Systems on Two-Dimensional Lattices....Pages 373-408
Two-Particle-Self-Consistent Approach for the Hubbard Model....Pages 409-453
Back Matter....Pages 455-461