Bosonization of Interacting Fermions in Arbitrary Dimensions

Bosonization of Interacting Fermions in Arbitrary Dimensions
Title Bosonization of Interacting Fermions in Arbitrary Dimensions PDF eBook
Author Peter Kopietz
Publisher Springer Science & Business Media
Pages 263
Release 2008-12-16
Genre Science
ISBN 3540684956

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The author presents in detail a new non-perturbative approach to the fermionic many-body problem, improving the bosonization technique and generalizing it to dimensions d1 via functional integration and Hubbard--Stratonovich transformations. In Part I he clearly illustrates the approximations and limitations inherent in higher-dimensional bosonization and derives the precise relation with diagrammatic perturbation theory. He shows how the non-linear terms in the energy dispersion can be systematically included into bosonization in arbitrary d, so that in d1 the curvature of the Fermi surface can be taken into account. Part II gives applications to problems of physical interest. The book addresses researchers and graduate students in theoretical condensed matter physics.

Bosonization of Interacting Fermions in Arbitrary Dimensions

Bosonization of Interacting Fermions in Arbitrary Dimensions
Title Bosonization of Interacting Fermions in Arbitrary Dimensions PDF eBook
Author Peter Kopietz
Publisher
Pages
Release 2006
Genre
ISBN

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Introduction to the Functional Renormalization Group

Introduction to the Functional Renormalization Group
Title Introduction to the Functional Renormalization Group PDF eBook
Author Peter Kopietz
Publisher Springer Science & Business Media
Pages 383
Release 2010-05-03
Genre Language Arts & Disciplines
ISBN 364205093X

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This book, based on a graduate course given by the authors, is a pedagogic and self-contained introduction to the renormalization group with special emphasis on the functional renormalization group. The functional renormalization group is a modern formulation of the Wilsonian renormalization group in terms of formally exact functional differential equations for generating functionals. In Part I the reader is introduced to the basic concepts of the renormalization group idea, requiring only basic knowledge of equilibrium statistical mechanics. More advanced methods, such as diagrammatic perturbation theory, are introduced step by step. Part II then gives a self-contained introduction to the functional renormalization group. After a careful definition of various types of generating functionals, the renormalization group flow equations for these functionals are derived. This procedure is shown to encompass the traditional method of the mode elimination steps of the Wilsonian renormalization group procedure. Then, approximate solutions of these flow equations using expansions in powers of irreducible vertices or in powers of derivatives are given. Finally, in Part III the exact hierarchy of functional renormalization group flow equations for the irreducible vertices is used to study various aspects of non-relativistic fermions, including the so-called BCS-BEC crossover, thereby making the link to contemporary research topics.

35 Years of Condensed Matter and Related Physics

35 Years of Condensed Matter and Related Physics
Title 35 Years of Condensed Matter and Related Physics PDF eBook
Author Daniel W. Hone
Publisher World Scientific
Pages 146
Release 1996
Genre Condensed matter
ISBN 9814530646

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Dynamics of Classical and Quantum Fields

Dynamics of Classical and Quantum Fields
Title Dynamics of Classical and Quantum Fields PDF eBook
Author Girish S. Setlur
Publisher Taylor & Francis
Pages 391
Release 2013-12-05
Genre Science
ISBN 1466556285

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Dynamics of Classical and Quantum Fields: An Introduction focuses on dynamical fields in non-relativistic physics. Written by a physicist for physicists, the book is designed to help readers develop analytical skills related to classical and quantum fields at the non-relativistic level, and think about the concepts and theory through numerous problems. In-depth yet accessible, the book presents new and conventional topics in a self-contained manner that beginners would find useful. A partial list of topics covered includes: Geometrical meaning of Legendre transformation in classical mechanics Dynamical symmetries in the context of Noether’s theorem The derivation of the stress energy tensor of the electromagnetic field, the expression for strain energy in elastic bodies, and the Navier Stokes equation Concepts of right and left movers in case of a Fermi gas explained Functional integration is interpreted as a limit of a sequence of ordinary integrations Path integrals for one and two quantum particles and for a fermion in presence of a filled Fermi sea Fermion and boson Fock spaces, along with operators that create and annihilate particles Coherent state path integrals Many-body topics such as Schrieffer Wolff transformation, Matsubara, and Keldysh Green functions Geometrical meaning of the vortex-vortex correlation function in a charged boson fluid Nonlocal particle-hole creation operators which diagonalize interacting many-body systems The equal mix of novel and traditional topics, use of fresh examples to illustrate conventional concepts, and large number of worked examples make this book ideal for an intensive one-semester course for beginning Ph.D. students. It is also a challenging and thought provoking book for motivated advanced undergraduates.

Quantum Statistical Field Theory

Quantum Statistical Field Theory
Title Quantum Statistical Field Theory PDF eBook
Author Norman J. Morgenstern Horing
Publisher Oxford University Press
Pages 448
Release 2017-09-22
Genre Science
ISBN 0192509756

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This book provides an introduction to the methods of coupled quantum statistical field theory and Green's functions. The methods of coupled quantum field theory have played a major role in the extensive development of nonrelativistic quantum many-particle theory and condensed matter physics. This introduction to the subject is intended to facilitate delivery of the material in an easily digestible form to advanced undergraduate physics majors at a relatively early stage of their scientific development. The main mechanism to accomplish this is the early introduction of variational calculus and the Schwinger Action Principle, accompanied by Green's functions. Important achievements of the theory in condensed matter and quantum statistical physics are reviewed in detail to help develop research capability. These include the derivation of coupled field Green's function equations-of-motion for a model electron-hole-phonon system, extensive discussions of retarded, thermodynamic and nonequilibrium Green's functions and their associated spectral representations and approximation procedures. Phenomenology emerging in these discussions include quantum plasma dynamic-nonlocal-screening, plasmons, polaritons, linear electromagnetic response, excitons, polarons, phonons, magnetic Landau quantization, van der Waals interactions, chemisorption, etc. Considerable attention is also given to low dimensional and nanostructured systems, including quantum wells, wires, dots and superlattices, as well as materials having exceptional conduction properties such as Superconductors, Superfluids and Graphene.

Composite Fermions

Composite Fermions
Title Composite Fermions PDF eBook
Author O. Heinonen
Publisher World Scientific
Pages 508
Release 1998
Genre Science
ISBN 9789812384133

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One of the most exciting recent developments to have emerged from the quantum Hall effect is the subject of composite fermions. This important volume gives a self-contained, comprehensive description of the subject, including fundamentals, more advanced theoretical work, and results from experimental observations of composite fermions.