Effective Field Theory of Hadrons at Finite Temperature
Author : Chungsik Song
Publisher :
Page : 280 pages
File Size : 13,57 MB
Release : 1993
Category :
ISBN :
Author : Chungsik Song
Publisher :
Page : 280 pages
File Size : 13,57 MB
Release : 1993
Category :
ISBN :
Author : Samirnath Mallik
Publisher : Cambridge University Press
Page : 267 pages
File Size : 32,47 MB
Release : 2016-10-27
Category : Science
ISBN : 1107145317
An elementary introduction to hadronic properties at finite temperature and density that develops real-time methods of thermal field theory.
Author : Joseph I. Kapusta
Publisher : Cambridge University Press
Page : 443 pages
File Size : 10,30 MB
Release : 2023-07-31
Category : Science
ISBN : 1009401955
Author : C. P. Burgess
Publisher : Cambridge University Press
Page : 665 pages
File Size : 50,28 MB
Release : 2020-12-10
Category : Science
ISBN : 0521195470
This advanced, accessible textbook on effective field theories uses worked examples to bring this important topic to a wider audience.
Author : Mikko Laine
Publisher : Springer
Page : 288 pages
File Size : 49,12 MB
Release : 2016-06-09
Category : Science
ISBN : 3319319337
This book presents thermal field theory techniques, which can be applied in both cosmology and the theoretical description of the QCD plasma generated in heavy-ion collision experiments. It focuses on gauge interactions (whether weak or strong), which are essential in both contexts. As well as the many differences in the physics questions posed and in the microscopic forces playing a central role, the authors also explain the similarities and the techniques, such as the resummations, that are needed for developing a formally consistent perturbative expansion. The formalism is developed step by step, starting from quantum mechanics; introducing scalar, fermionic and gauge fields; describing the issues of infrared divergences; resummations and effective field theories; and incorporating systems with finite chemical potentials. With this machinery in place, the important class of real-time (dynamic) observables is treated in some detail. This is followed by an overview of a number of applications, ranging from the study of phase transitions and particle production rate computations, to the concept of transport and damping coefficients that play a ubiquitous role in current developments. The book serves as a self-contained textbook on relativistic thermal field theory for undergraduate and graduate students of theoretical high-energy physics.
Author : Makoto Oka
Publisher : World Scientific
Page : 370 pages
File Size : 18,77 MB
Release : 1999-09-17
Category :
ISBN : 9814543594
The purpose of the School and Workshop was to study recent topics in QCD and hadron physics from various points of view. The subjects included perturbative and nonperturbative aspects of QCD, chiral effective theory in hadron physics and high temperature and density nuclear matter physics.Another purpose was to enhance communications and collaborations among researchers in the Asia and Oceania region.
Author : Ulf-G Meißner
Publisher : Cambridge University Press
Page : 625 pages
File Size : 16,39 MB
Release : 2022-08-25
Category : Science
ISBN : 1108476988
A detailed and comprehensive exploration of the foundations and fundamentals of effective field theories.
Author : Faqir C Khanna
Publisher : World Scientific
Page : 482 pages
File Size : 19,92 MB
Release : 2009-02-06
Category : Science
ISBN : 9814470732
This monograph presents recent developments in quantum field theory at finite temperature. By using Lie groups, ideas from thermal theory are considered with concepts of symmetry, allowing for applications not only to quantum field theory but also to transport theory, quantum optics and statistical mechanics. This includes an analysis of geometrical and topological aspects of spatially confined systems with applications to the Casimir effect, superconductivity and phase transitions. Finally, some developments in open systems are also considered. The book provides a unified picture of the fundamental aspects in thermal quantum field theory and their applications, and is important to the field as a result, since it combines several diverse ideas that lead to a better understanding of different areas of physics.
Author : Adriaan M J Schakel
Publisher : World Scientific Publishing Company
Page : 413 pages
File Size : 28,2 MB
Release : 2008-10-28
Category : Science
ISBN : 9813107197
This textbook covers the main topics in contemporary condensed matter physics in a modern and unified way, using quantum field theory in the functional-integral approach. The book highlights symmetry aspects in acknowledging that much of the collective behaviors of condensed matter systems at low temperatures emerge above a nontrivial ground state, which spontaneously breaks the symmetry.The emphasis is on effective field theories which provide an efficient and powerful description that is valid at long wavelengths and low frequencies. In conjunction with the emphasis on effective theories, a modern approach towards renormalization is taken, whereby a wavenumber cut-off is introduced to set a scale beyond which the microscopic model under consideration ceases to be valid.The unique and innovative character of this presentation, free of historical constraints, allows for a compact and self-contained treatment of the main topics in contemporary condensed matter physics.
Author : Achim Schwenk
Publisher : Springer
Page : 356 pages
File Size : 41,85 MB
Release : 2012-06-25
Category : Science
ISBN : 3642273203
There have been many recent and important developments based on effective field theory and the renormalization group in atomic, condensed matter, nuclear and high-energy physics. These powerful and versatile methods provide novel approaches to study complex and strongly interacting many-body systems in a controlled manner. The six extensive lectures gathered in this volume combine selected introductory and interdisciplinary presentations focused on recent applications of effective field theory and the renormalization group to many-body problems in such diverse fields as BEC, DFT, extreme matter, Fermi-liquid theory and gauge theories. Primarily aimed at graduate students and junior researchers, they offer an opportunity to explore fundamental physics across subfield boundaries at an early stage in their careers.