Introduction to Quantum Field Theory

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9789814329347: Introduction to Quantum Field Theory
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THIS BOOK DEALS WITH QUANTUM FIELD THEORY, THE LANGUAGE OF MODERN ELEMENTARY PARTICLES PHYSICS. BASED ON UNIVERSITY LECTURES GIVEN BY THE AUTHOR, THIS VOLUME PROVIDES A DETAILED TECHNICAL TREATMENT OF QUANTUM FIELD THEORY THAT IS PARTICULARLY USEFUL FOR STUDENTS; IT BEGINS WITH THE QUANTIZATION OF THE MOST IMPORTANT FREE FIELDS, THE SCALAR, THE SPIN-1/2 AND THE PHOTON FIELDS, AND IS THEN FOLLOWED BY A DETAILED ACCOUNT OF SYMMETRY PROPERTIES, INCLUDING A DISCUSSION ON GLOBAL AND LOCAL SYMMETRIES AND THE SPONTANEOUS BREAKING OF SYMMETRIES. PERTURBATION THEORY, ONE-LOOP EFFECTS FOR QUANTUM ELECTRODYNAMICS, AND RENORMALIZATION PROPERTIES ARE ALSO COVERED.

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Reseña del editor:

This book deals with quantum field theory, the language of modern elementary particles physics. Based on university lectures given by the author, this volume provides a detailed technical treatment of quantum field theory that is particularly useful for students; it begins with the quantization of the most important free fields, the scalar, the spin-1/2 and the photon fields, and is then followed by a detailed account of symmetry properties, including a discussion on global and local symmetries and the spontaneous breaking of symmetries. Perturbation theory, one-loop effects for quantum electrodynamics, and renormalization properties are also covered.

Nota de la solapa:

The book deals with quantum field theory which is the language of the modern physics of elementary particles. Written based on university lectures given by the author, the book provides treatments and technical details of quantum field theory, which will be particularly useful for students. The book starts with the quantization of the most important kind of free fields (the scalar, the spin-1/2 and the photon fields). It is then followed by a detailed account of the symmetry properties of a field theory and a discussion on global and local symmetries and the spontaneous breaking of symmetries. Other topics discussed include the perturbation theory, one-loop effects for quantum electrodynamics, and renormalization properties.

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