Maxwell Electrodynamics & Boson Fields in Spaces of Constant Curvature

Author:   E M Ovsiyuk ,  V V Kisel ,  V M Redkov
Publisher:   Nova Science Publishers Inc
ISBN:  

9781626188914


Pages:   521
Publication Date:   01 July 2013
Format:   Hardback
Availability:   In stock   Availability explained
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Maxwell Electrodynamics & Boson Fields in Spaces of Constant Curvature


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Overview

In this book detailed analytical treatment and exact solutions are given to a number of problems of classical electrodynamics and boson field theory in simplest non-Euclidean space-time models, open Bolyai and Lobachevsky space H3 and closed Riemann space S3, and (anti) de Sitter space-times. The main attention is focused on new themes created by non-vanishing curvature in the following topics: electrodynamics in curved spacetime and modelling of the media, MajoranaOppenheimer approach in curved space time, spin 1 field theory, tetrad based DuffinKemmer-Petiau formalism, SchrodingerPauli limit, DiracKahler particle, spin 2 field, anomalous magnetic moment, plane wave, cylindrical, and spherical solutions, spin 1 particle in a magnetic field, spin 1 field and cosmological radiation in de Sitter space-time, electromagnetic field and Schwarzschild black hole.

Full Product Details

Author:   E M Ovsiyuk ,  V V Kisel ,  V M Redkov
Publisher:   Nova Science Publishers Inc
Imprint:   Nova Science Publishers Inc
Dimensions:   Width: 18.00cm , Height: 3.20cm , Length: 26.00cm
Weight:   1.088kg
ISBN:  

9781626188914


ISBN 10:   1626188912
Pages:   521
Publication Date:   01 July 2013
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   In stock   Availability explained
We have confirmation that this item is in stock with the supplier. It will be ordered in for you and dispatched immediately.

Table of Contents

Introduction; Maxwell Equations, Geometry Effects on Constitutive Relations; Electrodynamics, Complex Rotation Group, Media, Gravity; DiracKahler Field Theory, 2-Potential Approach to Electrodynamics; 10-Dimensional Matrix Approach; DiracKahler Theory, Relation between Spinor & Tensor Formulations; Graviton in a Curved Space-Time Background & Gauge Symmetry; Particle with Spin 2 & Anomalous Magnetic Moment; Spherical Solutions for DiracKahler & Dirac Particles; Electromagnetic Spherical Solutions in Models S3 & H3; 10-Dimensional Spherical Solutions in Riemann space S3; Solutions with Cylindric Symmetry in Spherical Space; Solutions with Cylindric Symmetry in Lobachevsky Space; On Simulating a Medium with Special Properties by Lobachevsky Geometry; Maxwell Equations, Squaring Procedure, & Separation of the Variables; Helicity Operator & Spin 1 Field in Lobachevsky & Rieman Models; Spin 1 Particle in the Coulomb Field; Particle with Spin 1 in a Magnetic Field; Particle with Spin 1 in a Magnetic Field on the Hyperbolic Plane; Particle with Spin 1 in a Magnetic Field on the Spherical Plane; Electromagnetic Waves in de Sitter Space-Time; Spherical Waves of Spin 1 Particle in Anti de Sitter Space-Time; Calculation of the Reflection Coefficient for Particles in de Sitter Space; On Solutions of Maxwell Equations in the Schwarzschild Space-Time; Conclusions & Summaries; Bibliography; Index.

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