【正版全新】 凝聚态场论Alexander Altland,Ben Sim***著世界图书出版公司北京公司9787510095559 mobi 下载 网盘 caj lrf pdf txt 阿里云

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内容简介:
Modern experimental developments in condensed matter and ultracold atom physics present formidable challenges to theorists. This book provides a pedagogical introduction to quan-tum field theory in many particle physics, emphasizing the applicability of the formalism to concrete problems.
This second edition contains two new chapters developing path integral approaches to classical and quantum nonequilibrium phenomena. Other chapters cover a range of topics, from the introduction of many-body techniques and functional integration, to renormaliza-tion group methods, the theory of resp***e functi***, and topology. Conceptual ***ects and formal methodology are emphasized, but the discussion focuses on practical experimental applicati*** drawn largely from condensed matter physics and neighboring fields.
Extended and challenging problems with fully–worked soluti*** provide a bridge between formal manipulati*** and research-oriented thinking. Aimed at elevating graduate students to a level where they can engage in independent research, this book complements graduate level courses on many particle theory.
书籍目录:
Preface
1 From particles to fields
1.1 Classical harmonic chain: phon***
1.2 Functional ***ysis and variational principles
1.3 Maxwell's equati*** as a variational principle
1.4 Quantum chai
1.5 Quantum electrodynamics
1.6 Noether's theorem
1.7 Summary and outlook
1.8 Problems
2 Second quantizatio
2.1 Introduction to second quantizatio
2.2 Applicati*** of second quantizatio
2.3 Summary and outlook
2.4 Problems
3 Feynman path integral
3.1 The path integral: general formalism
3.2 C***truction of the path integral
3.3 Applicati*** of the Feynman path integral
3.4 Problems
3.5 Problems
4 Functional field integral
4.1 C***truction of the many-body path integral
4.2 Field integral for the quantum partition functio
4.3 Field theoretical bosonization: a case study
4.4 Summary and outlook
4.5 Problems
5 Perturbation theory
5.1 General structures and low-order expansi***
5.2 Ground state energy of the in***cting electron gas
5.3 Infinite-order expansi***
5.4 Summary and outlook
5.5 Problems
6 Broken symmetry and collective phenomena
6.1 Mean-field theory
6.2 Plasma theory of the in***cting electron gas
6.3 Bose-Einstein condensation and superfluidity
*** Superconductivity
6.5 Field theory of the disordered electron gas
6.6 Summary and outlook
6.7 Problems
7 Resp***e functi***
7.1 Crash course in modern experimental techniques
7.2 Linear resp***e theory
7.3 Analytic structure of correlation functi***
7.4 Electromagic linear resp***e
7.5 Summary and outlook
7.6 Problems
8 The renormalization group
8.1 The one-dimensional Ising model
8.2 Dissipative quantum tunneling
8.3 Renormalization group: general theory
8.4 RG ***ysis of the ferromagic transitio
8.5 RG ***ysis of the nonlinear a-model
8.6 Berezinskii-Kosterlitz-Thouless transitio
8.7 Summary and outlook
8.8 Problems
9 Topology
9.1 Example: particle on a ring
9.2 Homotopy
9.3 0-0terms
9.4 Wess-Zumino terms
9.5 Chern-Sim*** terms
9.6 Summary and outlook
9.7 Problems
10 Nonequilibrium (classical)
10.1 l~hndamental questi*** of (nonequilibrium) statistical mechanics
10.2 Langevin theory
……
作者介绍:
Alexander Altland is Professor of Theoretical Condensed Matter Physics at the Institute of Theoretical Physics, University of K¨oln. His main areas of research include mesoscopic physics, the physics of in***cting many particle systems, and quantum nonlinear dynamics.
Benjamin D. Sim*** is Professor of Theoretical Condensed Matter Physics at the
Cavendish Laboratory, University of Cambridge. His main areas of research include strongly correlated condensed matter systems, mesoscopic and ultracold atom physics.
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书籍介绍
Modern experimental developments in condensed matter and ultracold atom physics present formidable challenges to theorists. This book provides a pedagogical introduction to quan-tum field theory in many particle physics, emphasizing the applicability of the formalism to concrete problems.
This second edition contains two new chapters developing path integral approaches to classical and quantum nonequilibrium phenomena. Other chapters cover a range of topics, from the introduction of many-body techniques and functional integration, to renormaliza-tion group methods, the theory of resp***e functi***, and topology. Conceptual ***ects and formal methodology are emphasized, but the discussion focuses on practical experimental applicati*** drawn largely from condensed matter physics and neighboring fields.
Extended and challenging problems with fully–worked soluti*** provide a bridge between formal manipulati*** and research-oriented thinking. Aimed at elevating graduate students to a level where they can engage in independent research, this book complements graduate level courses on many particle theory.
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