Quantum Field Theory I

Foundations and Abelian and Non-Abelian Gauge Theories

Nonfiction, Science & Nature, Science, Physics, Nuclear Physics, Quantum Theory
Cover of the book Quantum Field Theory I by Edouard B. Manoukian, Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Edouard B. Manoukian ISBN: 9783319309392
Publisher: Springer International Publishing Publication: December 1, 2016
Imprint: Springer Language: English
Author: Edouard B. Manoukian
ISBN: 9783319309392
Publisher: Springer International Publishing
Publication: December 1, 2016
Imprint: Springer
Language: English

This textbook covers a broad spectrum of developments in QFT, emphasizing those aspects that are now well consolidated and for which satisfactory theoretical descriptions have been provided. The book is unique in that it offers a new approach to the subject and explores many topics merely touched upon, if covered at all, in standard reference works.

A detailed and largely non-technical introductory chapter traces the development of QFT from its inception in 1926. The elegant functional differential approach put forward by Schwinger, referred to as the quantum dynamical (action) principle, and its underlying theory are used systematically in order to generate the so-called vacuum-to-vacuum transition amplitude of both abelian and non-abelian gauge theories, in addition to Feynman’s well-known functional integral approach, referred to as the path-integral approach. Given the wealth of information also to be found in the abelian case, equal importance is put on both abelian and non-abelian gauge theories.

Particular emphasis is placed on the concept of a quantum field and its particle content to provide an appropriate description of physical processes at high energies, where relativity becomes indispensable. Moreover, quantum mechanics implies that a wave function renormalization arises in the QFT field independent of any perturbation theory - a point not sufficiently emphasized in the literature. The book provides an overview of all the fields encountered in present high-energy physics, together with the details of the underlying derivations. Further, it presents “deep inelastic” experiments as a fundamental application of quantum chromodynamics.

Though the author makes a point of deriving points in detail, the book still requires good background knowledge of quantum mechanics, including the Dirac Theory, as well as elements of the Klein-Gordon equation. The present volume sets the language, the notation and provides additional background for reading Quantum Field Theory II - Introduction to Quantum Gravity, Supersymmetry and String Theory, by the same author. Students in this field might benefit from first reading the book Quantum Theory: A Wide Spectrum (Springer, 2006), by the same author.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This textbook covers a broad spectrum of developments in QFT, emphasizing those aspects that are now well consolidated and for which satisfactory theoretical descriptions have been provided. The book is unique in that it offers a new approach to the subject and explores many topics merely touched upon, if covered at all, in standard reference works.

A detailed and largely non-technical introductory chapter traces the development of QFT from its inception in 1926. The elegant functional differential approach put forward by Schwinger, referred to as the quantum dynamical (action) principle, and its underlying theory are used systematically in order to generate the so-called vacuum-to-vacuum transition amplitude of both abelian and non-abelian gauge theories, in addition to Feynman’s well-known functional integral approach, referred to as the path-integral approach. Given the wealth of information also to be found in the abelian case, equal importance is put on both abelian and non-abelian gauge theories.

Particular emphasis is placed on the concept of a quantum field and its particle content to provide an appropriate description of physical processes at high energies, where relativity becomes indispensable. Moreover, quantum mechanics implies that a wave function renormalization arises in the QFT field independent of any perturbation theory - a point not sufficiently emphasized in the literature. The book provides an overview of all the fields encountered in present high-energy physics, together with the details of the underlying derivations. Further, it presents “deep inelastic” experiments as a fundamental application of quantum chromodynamics.

Though the author makes a point of deriving points in detail, the book still requires good background knowledge of quantum mechanics, including the Dirac Theory, as well as elements of the Klein-Gordon equation. The present volume sets the language, the notation and provides additional background for reading Quantum Field Theory II - Introduction to Quantum Gravity, Supersymmetry and String Theory, by the same author. Students in this field might benefit from first reading the book Quantum Theory: A Wide Spectrum (Springer, 2006), by the same author.

More books from Springer International Publishing

Cover of the book MSCs and Innovative Biomaterials in Dentistry by Edouard B. Manoukian
Cover of the book Managing Indoor Environments and Energy in Buildings with Integrated Intelligent Systems by Edouard B. Manoukian
Cover of the book Smartphone Start-ups by Edouard B. Manoukian
Cover of the book Chaotic, Fractional, and Complex Dynamics: New Insights and Perspectives by Edouard B. Manoukian
Cover of the book Edible Medicinal and Non-Medicinal Plants by Edouard B. Manoukian
Cover of the book Emigration and Diaspora Policies in the Age of Mobility by Edouard B. Manoukian
Cover of the book Transpacific Correspondence by Edouard B. Manoukian
Cover of the book Machine Learning and Knowledge Discovery in Databases by Edouard B. Manoukian
Cover of the book Research Perspectives on Work and the Transition to Motherhood by Edouard B. Manoukian
Cover of the book Contextualizing Systems Biology by Edouard B. Manoukian
Cover of the book Manual of Retinal Diseases by Edouard B. Manoukian
Cover of the book International Conference on Security and Privacy in Communication Networks by Edouard B. Manoukian
Cover of the book Complex Fluid-Flows in Microfluidics by Edouard B. Manoukian
Cover of the book Inequalities for the Numerical Radius of Linear Operators in Hilbert Spaces by Edouard B. Manoukian
Cover of the book Vehicle Dynamics of Modern Passenger Cars by Edouard B. Manoukian
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy