This 2007 textbook presents quantum field theoretical applications to systems out of equilibrium, using both the mathematical canonical way of studying non-equilibrium states, and Feynman diagrams. Complete with numerous exercises for self-study, this textbook is suitable for graduate students in statistical mechanics and condensed matter physics.
This 2007 textbook presents quantum field theoretical applications to systems out of equilibrium, using both the mathematical canonical way of studying non-equilibrium states, and Feynman diagrams. Complete with numerous exercises for self-study, this textbook is suitable for graduate students in statistical mechanics and condensed matter physics.
Preface 1. Quantum fields 2. Operators on the multi-particle state space 3. Quantum dynamics and Green's functions 4. Non-equilibrium theory 5. Real-time formalism 6. Linear response theory 7. Quantum kinetic equations 8. Non-equilibrium superconductivity 9. Diagrammatics and generating functionals 10. Effective action 11. Disordered conductors 12. Classical statistical dynamics Appendices: A. Path integrals B. Retarded and advanced propagators C. Analytic properties of Green's functions Bibliography Index.
Preface 1. Quantum fields 2. Operators on the multi-particle state space 3. Quantum dynamics and Green's functions 4. Non-equilibrium theory 5. Real-time formalism 6. Linear response theory 7. Quantum kinetic equations 8. Non-equilibrium superconductivity 9. Diagrammatics and generating functionals 10. Effective action 11. Disordered conductors 12. Classical statistical dynamics Appendices: A. Path integrals B. Retarded and advanced propagators C. Analytic properties of Green's functions Bibliography Index.
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