Quantum Field Theory
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Product Details
Author:
Jean-Bernard Zuber, Claude Itzykson
Format:
Paperback
Pages:
752
Publisher:
Dover Publications (February 24, 2006)
Language:
English
ISBN-13:
9780486445687
ISBN-10:
0486445682
Weight:
37.76oz
Dimensions:
6.14" x 9.21"
Case Pack:
10
Series:
Dover Books on Physics
File:
Dover-Dover_08042026_P10435224_onix30_Complete-20260803.xml
Folder:
Dover
As low as:
$47.45
List Price:
$49.95
Publisher Identifier:
P-DOVER
Discount Code:
D
Audience:
College/higher education
Pub Discount:
65
Imprint:
Dover Publications
Overview
Quantum field theory remains among the most important tools in defining and explaining the microscopic world. Recent years have witnessed a blossoming of developments and applications that extend far beyond the theory's original scope. This comprehensive text offers a balanced treatment, providing students with both a formal presentation and numerous practical examples of calculations.
This two-part approach begins with the standard quantization of electrodynamics, culminating in the perturbative renormalization. The second part comprises functional methods, relativistic bound states, broken symmetries, nonabelian gauge fields, and asymptotic behavior. Appropriate for students and researchers in field theory, particle physics, and related areas, this treatment presupposes a background in quantum mechanics, electrodynamics, and relativity, and it assumes some familiarity with classical calculus, including group theory and complex analysis.
This two-part approach begins with the standard quantization of electrodynamics, culminating in the perturbative renormalization. The second part comprises functional methods, relativistic bound states, broken symmetries, nonabelian gauge fields, and asymptotic behavior. Appropriate for students and researchers in field theory, particle physics, and related areas, this treatment presupposes a background in quantum mechanics, electrodynamics, and relativity, and it assumes some familiarity with classical calculus, including group theory and complex analysis.








