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Theoretical Methods for Strongly Correlated Electrons

  • Book
  • © 2004

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Part of the book series: CRM Series in Mathematical Physics (CRM)

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Table of contents (8 chapters)

  1. Numerical Methods

  2. Lagrangian, Functional Integral, Renormalization Group, Conformal and Bosonization Methods

  3. Functional Derivatives, Mean-Field, Self-Consistent Methods, Slave-Bosons, and Extensions

Keywords

About this book

Focusing on the purely theoretical aspects of strongly correlated electrons, this volume brings together a variety of approaches to models of the Hubbard type – i.e., problems where both localized and delocalized elements are present in low dimensions. The chapters are arranged in three parts. The first part deals with two of the most widely used numerical methods in strongly correlated electrons, the density matrix renormalization group and the quantum Monte Carlo method. The second part covers Lagrangian, Functional Integral, Renormalization Group, Conformal, and Bosonization methods that can be applied to one-dimensional or weakly coupled chains. The third part considers functional derivatives, mean-field, self-consistent methods, slave-bosons, and extensions. Taken together, the contributions to this volume represent a comprehensive overview of current problems and developments.

Editors and Affiliations

  • Département de Physique, Université de Sherbrooke, Sherbrooke, Canada

    David Sénéchal, André-Marie Tremblay, Claude Bourbonnais

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