Finite-Temperature Field Theory

Finite-Temperature Field Theory
Author :
Publisher : Cambridge University Press
Total Pages : 443
Release :
ISBN-10 : 9781009401951
ISBN-13 : 1009401955
Rating : 4/5 (51 Downloads)

Synopsis Finite-Temperature Field Theory by : Joseph I. Kapusta

Finite Temperature Field Theory (Second Edition)

Finite Temperature Field Theory (Second Edition)
Author :
Publisher : World Scientific
Total Pages : 653
Release :
ISBN-10 : 9789811272363
ISBN-13 : 9811272360
Rating : 4/5 (63 Downloads)

Synopsis Finite Temperature Field Theory (Second Edition) by : Ashok Das

This book discusses all three formalisms used in the study of finite temperature field theory, namely the imaginary time formalism, the closed time formalism and thermofield dynamics. In addition, the finite temperature description on an arbitrary path in the complex t-plane is also described in detail. Gauge field theories and symmetry restoration at finite temperature are among the practical examples discussed in depth. The thermal operator representation relating the zero temperature Feynman graphs to the finite temperature ones are also explained in depth. Applications of the formalisms are worked out in detail. The consistent generalization of light-front field theories to finite temperature is systematically explained as well as the phenomenon of Unruh radiation. Cutting (Cutcosky) rules for the imaginary parts of amplitudes at finite temperature are discussed in careful detail and examples are worked out. Spontaneous and dynamical symmetry breaking and possible symmetry restoration at finite temperature are described. The question of gauge dependence of the effective potential as well as physical parameters (like mass) and the Nielsen identities are explained with examples. The methods for calculating effective actions at finite temperature are described with examples. The subtleties which arise at finite temperature are pointed out in detail also with examples. The nonrestoration of some of the symmetries at high temperature (such as supersymmetry) and theories on nonsimply connected space-times are described thoroughly. Examples of nonequilibrium phenomena are discussed with the disoriented chiral condensates as an illustration. Fluctuation-dissipation theorem is explained in detail and is worked out systematically for glassy materials. Several appendices are added at the end of some of the chapters to help the readers appreciate the discussions of the individual chapters.This book is a very useful tool for graduate students, teachers and researchers in theoretical physics.

Finite-Temperature Field Theory

Finite-Temperature Field Theory
Author :
Publisher : Cambridge University Press
Total Pages : 441
Release :
ISBN-10 : 9781139457620
ISBN-13 : 1139457624
Rating : 4/5 (20 Downloads)

Synopsis Finite-Temperature Field Theory by : Joseph I. Kapusta

The 2006 second edition of this book develops the basic formalism and theoretical techniques for studying relativistic quantum field theory at high temperature and density. Specific physical theories treated include QED, QCD, electroweak theory, and effective nuclear field theories of hadronic and nuclear matter. Topics include: functional integral representation of the partition function, diagrammatic expansions, linear response theory, screening and plasma oscillations, spontaneous symmetry breaking, Goldstone theorem, resummation and hard thermal loops, lattice gauge theory, phase transitions, nucleation theory, quark-gluon plasma, and color superconductivity. Applications to astrophysics and cosmology cover white dwarf and neutron stars, neutrino emissivity, baryon number violation in the early universe, and cosmological phase transitions. Applications to relativistic nucleus-nucleus collisions are also included. The book is written for theorists in elementary particle physics, nuclear physics, astrophysics, and cosmology. Problems are given at the end of each chapter, and numerous references to the literature are included.

Finite-Temperature Field Theory

Finite-Temperature Field Theory
Author :
Publisher : Cambridge University Press
Total Pages : 236
Release :
ISBN-10 : 0521449456
ISBN-13 : 9780521449458
Rating : 4/5 (56 Downloads)

Synopsis Finite-Temperature Field Theory by : Joseph I. Kapusta

Finite-Temperature Field Theory develops the basic formalism and theoretical techniques for studying relativistic quantum field theory at high temperature and density.

Thermal Field Theory

Thermal Field Theory
Author :
Publisher : Cambridge University Press
Total Pages : 274
Release :
ISBN-10 : 0521654777
ISBN-13 : 9780521654777
Rating : 4/5 (77 Downloads)

Synopsis Thermal Field Theory by : Michel Le Bellac

Introduction to the relativistic thermal field theory and its applications in particle physics and astrophysics.

Finite-Temperature Field Theory

Finite-Temperature Field Theory
Author :
Publisher : Cambridge University Press
Total Pages : 442
Release :
ISBN-10 : 0521820820
ISBN-13 : 9780521820820
Rating : 4/5 (20 Downloads)

Synopsis Finite-Temperature Field Theory by : Joseph I. Kapusta

Thoroughly revised and updated, this new edition develops the basic formalism and theoretical techniques for studying relativistic field theory at finite temperature and density. It starts with the path-integral representation of the partition function and then proceeds to develop diagrammatic perturbation techniques. The standard model is discussed, along with the nature of the phase transitions in strongly interacting systems and applications to relativistic heavy ion collisions, dense stellar objects, and the early universe. First Edition Hb (1989): 0-521-35155-3 First Edition Pb (1994): 0-521-44945-6

Finite-temperature Field Theory

Finite-temperature Field Theory
Author :
Publisher :
Total Pages : 0
Release :
ISBN-10 : 1009401963
ISBN-13 : 9781009401968
Rating : 4/5 (63 Downloads)

Synopsis Finite-temperature Field Theory by : Joseph I. Kapusta

Statistical Approach to Quantum Field Theory

Statistical Approach to Quantum Field Theory
Author :
Publisher : Springer Nature
Total Pages : 568
Release :
ISBN-10 : 9783030832636
ISBN-13 : 3030832635
Rating : 4/5 (36 Downloads)

Synopsis Statistical Approach to Quantum Field Theory by : Andreas Wipf

This new expanded second edition has been totally revised and corrected. The reader finds two complete new chapters. One covers the exact solution of the finite temperature Schwinger model with periodic boundary conditions. This simple model supports instanton solutions – similarly as QCD – and allows for a detailed discussion of topological sectors in gauge theories, the anomaly-induced breaking of chiral symmetry and the intriguing role of fermionic zero modes. The other new chapter is devoted to interacting fermions at finite fermion density and finite temperature. Such low-dimensional models are used to describe long-energy properties of Dirac-type materials in condensed matter physics. The large-N solutions of the Gross-Neveu, Nambu-Jona-Lasinio and Thirring models are presented in great detail, where N denotes the number of fermion flavors. Towards the end of the book corrections to the large-N solution and simulation results of a finite number of fermion flavors are presented. Further problems are added at the end of each chapter in order to guide the reader to a deeper understanding of the presented topics. This book is meant for advanced students and young researchers who want to acquire the necessary tools and experience to produce research results in the statistical approach to Quantum Field Theory.

Quantum Field Theory in a Nutshell

Quantum Field Theory in a Nutshell
Author :
Publisher : Princeton University Press
Total Pages : 605
Release :
ISBN-10 : 9781400835324
ISBN-13 : 1400835321
Rating : 4/5 (24 Downloads)

Synopsis Quantum Field Theory in a Nutshell by : Anthony Zee

A fully updated edition of the classic text by acclaimed physicist A. Zee Since it was first published, Quantum Field Theory in a Nutshell has quickly established itself as the most accessible and comprehensive introduction to this profound and deeply fascinating area of theoretical physics. Now in this fully revised and expanded edition, A. Zee covers the latest advances while providing a solid conceptual foundation for students to build on, making this the most up-to-date and modern textbook on quantum field theory available. This expanded edition features several additional chapters, as well as an entirely new section describing recent developments in quantum field theory such as gravitational waves, the helicity spinor formalism, on-shell gluon scattering, recursion relations for amplitudes with complex momenta, and the hidden connection between Yang-Mills theory and Einstein gravity. Zee also provides added exercises, explanations, and examples, as well as detailed appendices, solutions to selected exercises, and suggestions for further reading. The most accessible and comprehensive introductory textbook available Features a fully revised, updated, and expanded text Covers the latest exciting advances in the field Includes new exercises Offers a one-of-a-kind resource for students and researchers Leading universities that have adopted this book include: Arizona State University Boston University Brandeis University Brown University California Institute of Technology Carnegie Mellon College of William & Mary Cornell Harvard University Massachusetts Institute of Technology Northwestern University Ohio State University Princeton University Purdue University - Main Campus Rensselaer Polytechnic Institute Rutgers University - New Brunswick Stanford University University of California - Berkeley University of Central Florida University of Chicago University of Michigan University of Montreal University of Notre Dame Vanderbilt University Virginia Tech University

Thermal Quantum Field Theory

Thermal Quantum Field Theory
Author :
Publisher : World Scientific
Total Pages : 482
Release :
ISBN-10 : 9789812818874
ISBN-13 : 9812818871
Rating : 4/5 (74 Downloads)

Synopsis Thermal Quantum Field Theory by : F. C. Khanna

Presents developments in thermal field theory. This book combines ideas from thermal theory with concepts from group theory using Lie algebras, allowing for applications not only to quantum field theory but also to quantum optics and statistical mechanics