BOSONIZATION AND STRONGLY CORRELATED SYSTEMS PDF

Would you like to tell us about a lower price? If you are a seller for this product, would you like to suggest updates through seller support? This volume provides a detailed account of bosonization. This important technique represents one of the most powerful nonperturbative approaches to many-body systems currently available.

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Bosonization and Strongly Correlated Systems. Alexander O. Gogolin , Alexander A. Nersesyan , Alexei M. This volume provides a detailed account of bosonization. This important technique represents one of the most powerful nonperturbative approaches to many-body systems currently available. The first part of the book examines the technical aspects of bosonization.

Topics include one-dimensional fermions, the Gaussian model, the structure of Hilbert space in conformal theories, Bose-Einstein condensation in two dimensions, non-Abelian bosonization, and the Ising and WZNW models. The third part addresses the problems of quantum impurities. Chapters cover potential scattering, the X-ray edge problem, impurities in Tomonaga-Luttinger liquids and the multi-channel Kondo problem.

This book will be an excellent reference for researchers and graduate students working in theoretical physics, condensed matter physics and field theory. Virasoro algebra. DotsenkoFateev bosonization scheme for the minimal models. Relevant and irrelevant fields. BoseEinstein Condensation in two dimensions Beresinskii. The sineGordon model. Exact solution of the sineGordon model. Spin S 12 HeisenbergIsing chain. The role of magnetic field. What may happen with a TomonagaLuttinger liquid in three.

Two weakly coupled TomonagaLuttinger liquids spinless case. Correlation functions for the identical chains. Inequivalent chains nonAbelian bosonization.

Appendix A The topological term emerging from. Appendix Multiparticle formfactors. Ising model. More about the WZNW model. NonAbelian bosonization. Calculation of a nontrivial determinant. Interacting fermions with spin. Spin12 TomonagaLuttinger liquid. Instabilities of a TomonagaLuttinger liquid. Spectral gap in the spin sector. Optical conductivity. Appendix RG equations for the model of onedimensional electrons.

Bosonization and fermionization. Appendix Conditions for suppression of the singleparticle tunneling. Potential scattering. The scattering phase. Statement of the problem. Exact solution for the overlap integral. Appendix B The WienerHopf method. Strongcoupling analysis. Multichannel Kondo problem.

Coulomb blockade. Andrei, K. Furuya and JH Lowenstein, Rev. Gaussian model Lagrangian formulation.

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Skip to search form Skip to main content You are currently offline. Some features of the site may not work correctly. Gogolin and Alexei M. Gogolin , Alexei M. Tsvelik Published Physics. This volume provides a detailed account of bosonization. The first part of the book examines the technical aspects of bosonization including one-dimensional fermions, the Gaussian model, the structure of Hilbert space in conformal theories, Bose-Einstein condensation in two dimensions, non-Abelian bosonization, and the Ising and WZNW models.

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Bosonization and Strongly Correlated Systems

Bosonization and Strongly Correlated Systems. Alexander O. Gogolin , Alexander A. Nersesyan , Alexei M.

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Gogolin and Alexander A. Nersesyan and Alexei M. This volume provides a detailed account of bosonization. This important technique represents one of the most powerful nonperturbative approaches to many-body systems currently available. The first part of the book examines the technical aspects of bosonization. Topics include one-dimensional fermions, the Gaussian model, the structure of Hilbert space in conformal theories, Bose-Einstein condensation in two dimensions, non-Abelian bosonization, and the Ising and WZNW models. The third part addresses the problems of quantum impurities.

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