Feynman Integrals: A Comprehensive Treatment for Students and Researchers: UNITEXT for Physics
Autor Stefan Weinzierlen Limba Engleză Hardback – 12 iun 2022
The book covers modern developments in the field of Feynman integrals. Topics included are: representations of Feynman integrals, integration-by-parts, differential equations, intersection theory, multiple polylogarithms, Gelfand-Kapranov-Zelevinsky systems, coactions and symbols, cluster algebras, elliptic Feynman integrals, and motives associated with Feynman integrals. This volume is aimed at a) students at the master's level in physics or mathematics, b) physicists who want to learn how to calculate Feynman integrals (for whom state-of-the-art techniques and computations are provided), and c) mathematicians who are interested in the mathematical aspects underlying Feynman integrals. It is, indeed, the interwoven nature of their physical and mathematical aspects that make Feynman integrals so enthralling.
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Paperback (1) | 603.75 lei 6-8 săpt. | |
Springer International Publishing – 12 iun 2023 | 603.75 lei 6-8 săpt. | |
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Springer International Publishing – 12 iun 2022 | 719.79 lei 6-8 săpt. |
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Specificații
ISBN-13: 9783030995577
ISBN-10: 3030995577
Pagini: 857
Ilustrații: XIV, 857 p. 142 illus., 32 illus. in color.
Dimensiuni: 155 x 235 x 57 mm
Greutate: 1.38 kg
Ediția:1st ed. 2022
Editura: Springer International Publishing
Colecția Springer
Seria UNITEXT for Physics
Locul publicării:Cham, Switzerland
ISBN-10: 3030995577
Pagini: 857
Ilustrații: XIV, 857 p. 142 illus., 32 illus. in color.
Dimensiuni: 155 x 235 x 57 mm
Greutate: 1.38 kg
Ediția:1st ed. 2022
Editura: Springer International Publishing
Colecția Springer
Seria UNITEXT for Physics
Locul publicării:Cham, Switzerland
Cuprins
Introduction.- Basics.- Graph polynomials.- Quantum field theory.- One-loop integrals.- Iterated integrals.- Transformations of differential equations.- Multiple polylogarithms.- Nested sums.- Sector decomposition.- Hopf algebras, coactions and symbols.- Cluster algebras.- Elliptic curves.- Motives and mixed Hodge structures.- Numerics.- Final project.
Recenzii
“This book provides a detailed and up-to-date introduction to Feynman integrals … . The book is written in a very didactic way. … the book gives an excellent introduction to the field of Feynman integrals at the level of a master's/starting Ph.D. student … . The structure of the book and the fact that it contains many exercises make it a very useful resource for a course on this topic.” (Samuel Abreu, Mathematical Reviews, December, 2023)
Notă biografică
Stefan Weinzierl is Professor for theoretical high energy physics at Johannes Gutenberg Universität Mainz, Germany. His research interests include precision calculations in particle physics, multiple polylogarithms and elliptic generalizations, gravity and gauge theories as well as jet physics and top quark physics.
Textul de pe ultima copertă
This textbook on Feynman integrals starts from the basics, requiring only knowledge of special relativity and undergraduate mathematics. Feynman integrals are indispensable for precision calculations in quantum field theory. At the same time, they are also fascinating from a mathematical point of view. Topics from quantum field theory and advanced mathematics are introduced as needed.
The book covers modern developments in the field of Feynman integrals. Topics included are: representations of Feynman integrals, integration-by-parts, differential equations, intersection theory, multiple polylogarithms, Gelfand-Kapranov-Zelevinsky systems, coactions and symbols, cluster algebras, elliptic Feynman integrals, and motives associated with Feynman integrals. This volume is aimed at a) students at the master's level in physics or mathematics, b) physicists who want to learn how to calculate Feynman integrals (for whom state-of-the-art techniques and computations are provided), and c) mathematicians who are interested in the mathematical aspects underlying Feynman integrals. It is, indeed, the interwoven nature of their physical and mathematical aspects that make Feynman integrals so enthralling.
The book covers modern developments in the field of Feynman integrals. Topics included are: representations of Feynman integrals, integration-by-parts, differential equations, intersection theory, multiple polylogarithms, Gelfand-Kapranov-Zelevinsky systems, coactions and symbols, cluster algebras, elliptic Feynman integrals, and motives associated with Feynman integrals. This volume is aimed at a) students at the master's level in physics or mathematics, b) physicists who want to learn how to calculate Feynman integrals (for whom state-of-the-art techniques and computations are provided), and c) mathematicians who are interested in the mathematical aspects underlying Feynman integrals. It is, indeed, the interwoven nature of their physical and mathematical aspects that make Feynman integrals so enthralling.
Caracteristici
Covers the exciting development in the field of Feynman integrals of the last 15 years Offers a pedagogical style: Students at the beginning of their master degree should be able to follow the book Includes many exercises with solutions