This textbook addresses the special physics of many-particle systems, especially those dominated by correlation effects. It develops modern methods to treat such systems and demonstrates their application through numerous appropriate exercises, mainly from the field of solid state physics. The book is written in a tutorial style appropriate for those who want to learn many-body theory and eventually to use this to do research work in this field. The exercises, together with full solutions for evaluating one's performance, help to deepen understanding of the main aspects of many-particle systems.
This revised second edition presents new sections on the finite-temperature Matsubara formalism, in particular with respect to Dyson equation, the Hartree-Fock approximation, second order perturbation theory, spin density waves, Hubbard model, Jellium model, quasi particles, Fermi liquids and multi particle Matsubara functions.
Completing the outstanding Theoretical Physics series, this book will be a valuable resource for advanced students and researchers alike.
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The Second Quantisation.- Many-Body Model Systems.- Green’s Functions.- Systems of Interacting Particles.- Perturbation Theory (T = 0).- Perturbation Theory at Finite Temperatures.- Solutions of the Exercises.- Appendix.- Index.
Les mer
This textbook addresses the special physics of many-particle systems, especially those dominated by correlation effects. It develops modern methods to treat such systems and demonstrates their application through numerous appropriate exercises, mainly from the field of solid state physics. The book is written in a tutorial style appropriate for those who want to learn many-body theory and eventually to use this to do research work in this field. The exercises, together with full solutions for evaluating one's performance, help to deepen understanding of the main aspects of many-particle systems.
This revised second edition presents new sections on the finite-temperature Matsubara formalism, in particular with respect to Dyson equation, the Hartree-Fock approximation, second order perturbation theory, spin density waves, Hubbard model, Jellium model, quasi particles, Fermi liquids and multi particle Matsubara functions.

Completing the outstanding Theoretical Physics series, this book will be a valuable resource for advanced students and researchers alike.
Les mer
Offers detailed explanations of the solutions to numerous problems Written in a tutorial style which reflects the author's 40 years of teaching experience Extensively updated with new sections on the finite-temperature Matsubara formalism, Hartree-Fock approximation, second order perturbation theory, Hubbard model, Fermi liquids and multi particle Matsubara functions
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GPSR Compliance The European Union's (EU) General Product Safety Regulation (GPSR) is a set of rules that requires consumer products to be safe and our obligations to ensure this. If you have any concerns about our products you can contact us on ProductSafety@springernature.com. In case Publisher is established outside the EU, the EU authorized representative is: Springer Nature Customer Service Center GmbH Europaplatz 3 69115 Heidelberg, Germany ProductSafety@springernature.com
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Produktdetaljer

ISBN
9783319983240
Publisert
2018-11-15
Utgave
2. utgave
Utgiver
Springer International Publishing AG
Høyde
235 mm
Bredde
155 mm
Aldersnivå
Graduate, UP, 05
Språk
Product language
Engelsk
Format
Product format
Innbundet
Antall sider
695

Forfatter
Oversetter

Biografisk notat

Prof. Dr Wolfgang Nolting is an emeritus professor of physics of the German Humboldt University in Berlin, whose research interests span solid state physics and magnetism. He has over 40 years of teaching experience at various institutions including the University of Münster, ETH Zürich, the University of Würzburg and the Universidad de Valladolid in Spain. His acclaimed German textbook series on Theoretical Physics has now attained the rank of a standard work in physics education. Nolting is famous for his refined didactical style and has been referred to as the "German Feynman" in reviews.