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Lectures on quantum field theory

By: Das, Ashok.
Material type: materialTypeLabelBookPublisher: New Jersey World Scientific 2008Description: xiii, 775p.ISBN: 9789812832863.Subject(s): Quantum field theoryDDC classification: 530.143 | D26l Summary: This book consists of the lectures for a two-semester course on quantum field theory, and as such is presented in a quite informal and personal manner. The course starts with relativistic one-particle systems, and develops the basics of quantum field theory with an analysis of the representations of the Poincaré group. Canonical quantization is carried out for scalar, fermion, Abelian and non-Abelian gauge theories. Covariant quantization of gauge theories is also carried out with a detailed description of the BRST symmetry. The Higgs phenomenon and the standard model of electroweak interactions are also developed systematically. Regularization and (BPHZ) renormalization of field theories as well as gauge theories are discussed in detail, leading to a derivation of the renormalization group equation. In addition, two chapters ― one on the Dirac quantization of constrained systems and another on discrete symmetries ― are included for completeness, although these are not covered in the two-semester course.
List(s) this item appears in: New arrival April 24 to 30, 2023
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Item type Current location Call number Status Date due Barcode Item holds
Books Books PK Kelkar Library, IIT Kanpur
530.143 D26l (Browse shelf) Checked out to Atanu Samanta (S23109060600) 03/06/2024 GB2556
Total holds: 0

This book consists of the lectures for a two-semester course on quantum field theory, and as such is presented in a quite informal and personal manner. The course starts with relativistic one-particle systems, and develops the basics of quantum field theory with an analysis of the representations of the Poincaré group. Canonical quantization is carried out for scalar, fermion, Abelian and non-Abelian gauge theories. Covariant quantization of gauge theories is also carried out with a detailed description of the BRST symmetry. The Higgs phenomenon and the standard model of electroweak interactions are also developed systematically. Regularization and (BPHZ) renormalization of field theories as well as gauge theories are discussed in detail, leading to a derivation of the renormalization group equation. In addition, two chapters ― one on the Dirac quantization of constrained systems and another on discrete symmetries ― are included for completeness, although these are not covered in the two-semester course.

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