Towards the Mathematics of Quantum Field Theory: Ergebnisse der Mathematik und ihrer Grenzgebiete. 3. Folge / A Series of Modern Surveys in Mathematics, cartea 59
Autor Frédéric Paugamen Limba Engleză Hardback – 5 mar 2014
The first part of the book introduces the mathematical methods needed to work with the physicists' spaces of fields, including parameterized and functional differential geometry, functorial analysis, and the homotopical geometric theory of non-linear partial differential equations, with applications togeneral gauge theories. The second part presents a large family of examples of classical field theories, both from experimental and theoretical physics, while the third part provides an introduction to quantum field theory, presents various renormalization methods, and discusses the quantization of factorization algebras.
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Specificații
ISBN-13: 9783319045634
ISBN-10: 3319045636
Pagini: 504
Ilustrații: XVI, 487 p. 77 illus., 1 illus. in color.
Dimensiuni: 155 x 235 x 32 mm
Greutate: 0.88 kg
Ediția:2014
Editura: Springer International Publishing
Colecția Springer
Seria Ergebnisse der Mathematik und ihrer Grenzgebiete. 3. Folge / A Series of Modern Surveys in Mathematics
Locul publicării:Cham, Switzerland
ISBN-10: 3319045636
Pagini: 504
Ilustrații: XVI, 487 p. 77 illus., 1 illus. in color.
Dimensiuni: 155 x 235 x 32 mm
Greutate: 0.88 kg
Ediția:2014
Editura: Springer International Publishing
Colecția Springer
Seria Ergebnisse der Mathematik und ihrer Grenzgebiete. 3. Folge / A Series of Modern Surveys in Mathematics
Locul publicării:Cham, Switzerland
Public țintă
ResearchCuprins
Introduction.- Mathematical Preliminaries.- Classical Trajectories and Fields.- Quantum Trajectories and Fields.- Appendices.
Recenzii
“The book under review is a valuable witness to a wide range of recent developments that aim at unraveling the mathematics of quantum field theory. … the book is well written with an original organization of the material. Its reductionist viewpoint makes it a valuable textbook, especially for the more experienced practitioners in this domain of mathematical physics.” (Walter D. van Suijlekom, Jahresbericht der Deutschen Mathematiker-Vereinigung, Vol. 117, 2015)
“This is a highly specialized monograph exposing current research in a systematic way, aimed at researchers and graduate students in this area. The author has tried to include several examples to illustrate the general methods being treated and ease the reader through the journey.” (Felipe Zaldivar, MAA Reviews, July, 2014)
“This is a complete guide to the mathematics underlying the laws of physics in general and quantum physics in particular. … Frederic Paugam has given us a work of enormous scope and shows students a road to a coordinate-free presentation of mathematical objects underlying classical and quantum field theories. … The book will be useful to graduate student, but also to pure and applied mathematicians interested in modern mathematical developments related to quantum theory.” (Gert Roepstorff, zbMATH, Vol. 1287, 2014)
“This is a highly specialized monograph exposing current research in a systematic way, aimed at researchers and graduate students in this area. The author has tried to include several examples to illustrate the general methods being treated and ease the reader through the journey.” (Felipe Zaldivar, MAA Reviews, July, 2014)
“This is a complete guide to the mathematics underlying the laws of physics in general and quantum physics in particular. … Frederic Paugam has given us a work of enormous scope and shows students a road to a coordinate-free presentation of mathematical objects underlying classical and quantum field theories. … The book will be useful to graduate student, but also to pure and applied mathematicians interested in modern mathematical developments related to quantum theory.” (Gert Roepstorff, zbMATH, Vol. 1287, 2014)
Notă biografică
Frédéric Paugam is a pure mathematician working at the University Pierre et Marie Curie. He started his career in arithmetic geometry, working on Galois representations and abelian varieties. He first became interested in the mathematics of quantum physics through the study of quantum statistical mechanics. He then approached quantum field theory with the categorical methods that he had learned from the work of Grothendieck’s school. He has since held various courses on this subject, allowing him to develop the tools and content of this book with the aim of teaching in mind.
Textul de pe ultima copertă
The aim of this book is to introduce mathematicians (and, in particular, graduate students) to the mathematical methods of theoretical and experimental quantum field theory, with an emphasis on coordinate-free presentations of the mathematical objects in play. This should in turn promote interaction between mathematicians and physicists by supplying a common and flexible language for the good of both communities, even if the mathematical one is the primary target. This reference work provides a coherent and complete mathematical toolbox for classical and quantum field theory, based on categorical and homotopical methods, representing an original contribution to the literature.
The first part of the book introduces the mathematical methods needed to work with the physicists' spaces of fields, including parameterized and functional differential geometry, functorial analysis, and the homotopical geometric theory of non-linear partial differential equations, with applications to generalgauge theories. The second part presents a large family of examples of classical field theories, both from experimental and theoretical physics, while the third part provides an introduction to quantum field theory, presents various renormalization methods, and discusses the quantization of factorization algebras. The book is primarily intended for pure mathematicians (and in particular graduate students) who would like to learn about the mathematics of quantum field theory.
The first part of the book introduces the mathematical methods needed to work with the physicists' spaces of fields, including parameterized and functional differential geometry, functorial analysis, and the homotopical geometric theory of non-linear partial differential equations, with applications to generalgauge theories. The second part presents a large family of examples of classical field theories, both from experimental and theoretical physics, while the third part provides an introduction to quantum field theory, presents various renormalization methods, and discusses the quantization of factorization algebras. The book is primarily intended for pure mathematicians (and in particular graduate students) who would like to learn about the mathematics of quantum field theory.
Caracteristici
Introduces new concepts Provides a clear overview Gives a complete mathematical toolbox for the coordinate-free treatment of classical and quantum field theories Includes supplementary material: sn.pub/extras