Logo

Introduction to Extended Electrodynamics

Small book cover: Introduction to Extended Electrodynamics

Introduction to Extended Electrodynamics
by

Publisher: arXiv
Number of pages: 134

Description:
This paper summarizes the motivations and results obtained so far in the frame of a particular non-linearization of Classical Electrodynamics, which was called Extended Electrodynamics. The main purpose pursued with this non-linear extension of the classical Maxwell's equations is to have a reliable field-theoretical approach in describing (3+1) soliton-like electromagnetic formations, in particular, to build an extended and finite field model of free photons and photon complexes.

Home page url

Download or read it online for free here:
Download link
(770KB, PDF)

Similar books

Book cover: Essential ElectrodynamicsEssential Electrodynamics
by - Bookboon
Starting with Maxwell's equations and conservation laws, the book takes a logical step-by-step progression through electromagnetic waves in empty space, dispersive media and in waveguides. The book ends with radiation and scattering.
(10860 views)
Book cover: Solutions to problems of Jackson's Classical ElectrodynamicsSolutions to problems of Jackson's Classical Electrodynamics
by - Samizdat Press
A collection of answers to problems from a graduate course in electrodynamics. The problems are mainly from Jackson's Classical Electrodynamics, with some practice problems. The answers provide the reader with a guideline to understand the problems.
(22037 views)
Book cover: Electromagnetic Fields and EnergyElectromagnetic Fields and Energy
by - MIT
The text is aimed at an audience that has seen Maxwell's equations in integral or differential form (second-term Freshman Physics) and had some exposure to integral theorems and differential operators (second term Freshman Calculus).
(12233 views)
Book cover: Essential ElectromagnetismEssential Electromagnetism
by - Bookboon
A concise introduction to this fundamental topic. Starting with forces on charges, it takes a progression through electrostatics and magnetostatics, both in empty space and in matter. Intended for undergraduate studies in physics and engineering.
(11525 views)