Classical Field Theory and the Stress-Energy Tensor

Classical Field Theory and the Stress-Energy Tensor

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  • Author: Mark S. Swanson
  • Publisher: Morgan & Claypool Publishers
  • ISBN: 1681741210
  • Category : Science
  • Languages : en
  • Pages : 188

This book is a concise introduction to the key concepts of classical field theory for beginning graduate students and advanced undergraduate students who wish to study the unifying structures and physical insights provided by classical field theory without dealing with the additional complication of quantization. In that regard, there are many important aspects of field theory that can be understood without quantizing the fields. These include the action formulation, Galilean and relativistic invariance, traveling and standing waves, spin angular momentum, gauge invariance, subsidiary conditions, fluctuations, spinor and vector fields, conservation laws and symmetries, and the Higgs mechanism, all of which are often treated briefly in a course on quantum field theory.


Classical Field Theory

Classical Field Theory

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  • Author: Horaƫiu Năstase
  • Publisher: Cambridge University Press
  • ISBN: 1108477011
  • Category : Science
  • Languages : en
  • Pages : 483

An introduction to classical field theory focusing on methods and solutions, providing a foundation for the study of quantum field theory.


Classical Field Theory

Classical Field Theory

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  • Author: Francis E. Low
  • Publisher: John Wiley & Sons
  • ISBN: 3527617469
  • Category : Science
  • Languages : en
  • Pages : 439

The author uses a unique approach which emphasizes the field theoretic aspects of gravitation and the strong analogies between gravitation and the other areas that are studied in physics. The theory-centered text begins with the simplest experimental facts then proceeds to the corresponding differential equations, theoretical constructs such as energy, momentum and stress and several applications. End-of-chapter problems provide students with an opportunity to test their understanding, serve as an introduction to and a review of material not included in the book and can be used to develop examples, extensions and generalizations of the material presented.


Introduction to the Classical Theory of Particles and Fields

Introduction to the Classical Theory of Particles and Fields

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  • Author: Boris Kosyakov
  • Publisher: Springer Science & Business Media
  • ISBN: 3540409343
  • Category : Science
  • Languages : en
  • Pages : 486

This volume is intended as a systematic introduction to gauge field theory for advanced undergraduate and graduate students in high energy physics. The discussion is restricted to the classical (non-quantum) theory in Minkowski spacetime. Particular attention has been given to conceptual aspects of field theory, accurate definitions of basic physical notions, and thorough analysis of exact solutions to the equations of motion for interacting systems.


Classical Field Theory

Classical Field Theory

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  • Author: Joel Franklin
  • Publisher: Cambridge University Press
  • ISBN: 1107189616
  • Category : Science
  • Languages : en
  • Pages : 219

Special relativity -- Point particle fields -- Field Lagrangians -- Gravity


The Classical Theory of Fields

The Classical Theory of Fields

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  • Author: Лев Давидович Ландау
  • Publisher:
  • ISBN:
  • Category : Electromagnetic fields
  • Languages : en
  • Pages : 424


Advances in Classical Field Theory

Advances in Classical Field Theory

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  • Author: Asher Yahalom
  • Publisher: Bentham Science Publishers
  • ISBN: 1608051951
  • Category : Science
  • Languages : en
  • Pages : 302

Annotation Classical field theory is employed by physicists to describe a wide variety of physical phenomena. These include electromagnetism, fluid dynamics, gravitation and quantum mechanics. The central entity of field theory is the field which is usually a multi component function of space and time. Those multi component functions are usually grouped together as vector fields as in the case in electromagnetic theory and fluid dynamics, in other cases they are grouped as tensors as in theories of gravitation and yet in other cases they are grouped as complex functions as in the case of quantum mechanics. In order to know the value of the field one needs to solve a set of coupled partial differential equations with given boundary and initial conditions. The book covers a selection of recent advances in classical field theory involving electromagnetism, fluid dynamics, gravitation and quantum mechanics. Advances in Classical Field Theory will benefit readers by saving them the effort to read through numerous journal articles which would be needed to obtain a coherent picture of classical field theory otherwise. The book is unique in its aim and scope and is not similar to any existing publication.


Dynamics of Classical and Quantum Fields

Dynamics of Classical and Quantum Fields

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  • Author: Girish S. Setlur
  • Publisher: Taylor & Francis
  • ISBN: 1466556285
  • Category : Science
  • Languages : en
  • Pages : 391

Dynamics of Classical and Quantum Fields: An Introduction focuses on dynamical fields in non-relativistic physics. Written by a physicist for physicists, the book is designed to help readers develop analytical skills related to classical and quantum fields at the non-relativistic level, and think about the concepts and theory through numerous problems. In-depth yet accessible, the book presents new and conventional topics in a self-contained manner that beginners would find useful. A partial list of topics covered includes: Geometrical meaning of Legendre transformation in classical mechanics Dynamical symmetries in the context of Noether’s theorem The derivation of the stress energy tensor of the electromagnetic field, the expression for strain energy in elastic bodies, and the Navier Stokes equation Concepts of right and left movers in case of a Fermi gas explained Functional integration is interpreted as a limit of a sequence of ordinary integrations Path integrals for one and two quantum particles and for a fermion in presence of a filled Fermi sea Fermion and boson Fock spaces, along with operators that create and annihilate particles Coherent state path integrals Many-body topics such as Schrieffer Wolff transformation, Matsubara, and Keldysh Green functions Geometrical meaning of the vortex-vortex correlation function in a charged boson fluid Nonlocal particle-hole creation operators which diagonalize interacting many-body systems The equal mix of novel and traditional topics, use of fresh examples to illustrate conventional concepts, and large number of worked examples make this book ideal for an intensive one-semester course for beginning Ph.D. students. It is also a challenging and thought provoking book for motivated advanced undergraduates.


Principles of Classical Mechanics and Field Theory / Prinzipien der Klassischen Mechanik und Feldtheorie

Principles of Classical Mechanics and Field Theory / Prinzipien der Klassischen Mechanik und Feldtheorie

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  • Author: S. Flügge
  • Publisher: Springer-Verlag
  • ISBN: 3642459439
  • Category : Science
  • Languages : de
  • Pages : 909


Mathematical Aspects of Classical Field Theory

Mathematical Aspects of Classical Field Theory

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  • Author: Mark J. Gotay
  • Publisher: American Mathematical Soc.
  • ISBN: 0821851446
  • Category : Science
  • Languages : en
  • Pages : 658

Classical field theory has undergone a renaissance in recent years. Symplectic techniques have yielded deep insights into its foundations, as has an improved understanding of the variational calculus. Further impetus for the study of classical fields has come from other areas, such as integrable systems, Poisson geometry, global analysis, and quantum theory. This book contains the proceedings of the AMS-IMS-SIAM Joint Summer Research Conference on Mathematical Aspects of Classical Field Theory, held in July 1991 at the University of Washington at Seattle. The conference brought together researchers in many of the main areas of classical field theory to present the latest ideas and results. The volume contains thirty refereed papers, both survey and research articles, and is designed to reflect the state of the art as well as chart the future course of the subject. The topics fall into four major categories: global analysis and relativity (cosmic censorship, initial value problem, quantum gravity), geometric methods (symplectic and Poisson structures, momentum mappings, Dirac constraint theory), BRST theory, and the calculus of variations (the variational bicomplex, higher order theories). Also included are related topics with a ``classical basis'', such as geometric quantization, integrable systems, symmetries, deformation theory, and geometric mechanics.