Quantum Theory of Many-Body Systems: Techniques and Applications

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This text presents a self-contained treatment of the physics of many-body systems from the point of view of condensed matter. The approach, quite traditionally, uses the mathematical formalism of quasiparticles and Green’s functions. In particular, it covers all the important diagram techniques for normal and superconducting systems, including the zero-temperature perturbation theory and the Matsubara, Keldysh and Nambu-Gor'kov formalism, as well as an introduction to Feynman path integrals.

This new edition contains an introduction to the methods of theory of one-dimensional systems (bosonization and conformal field theory) and their applications to many-body problems.

Intended for graduate students in physics and related fields, the aim is not to be exhaustive, but to present enough detail to enable the student to follow the current research literature, or to apply the techniques to new problems. Many of the examples are drawn from mesoscopic physics, which deals with systems small enough that quantum coherence is maintained throughout their volume and which therefore provides an ideal testing ground for many-body theories.

Author(s): Alexandre Zagoskin (auth.)
Series: Graduate Texts in Physics
Edition: 2
Publisher: Springer International Publishing
Year: 2014

Language: English
Pages: 280
Tags: Strongly Correlated Systems, Superconductivity; Mathematical Applications in the Physical Sciences; Quantum Physics; Complex Systems; Condensed Matter Physics; Quantum Information Technology, Spintronics

Front Matter....Pages i-xvi
Basic Concepts....Pages 1-51
Green’s Functions at Zero Temperature....Pages 53-100
More Green’s Functions, Equilibrium and Otherwise, and Their Applications....Pages 101-156
Methods of the Many-Body Theory in Superconductivity....Pages 157-225
Many-Body Theory in One Dimension....Pages 227-261
Back Matter....Pages 263-280