Relativistic Electrodynamics

Relativistic Electrodynamics
Author: Peeter Joot
Publisher: Peeter Joot
Total Pages: 416
Release: 2019-03-04
Genre: Science
ISBN:

These are my personal lecture notes for the Spring 2011, University of Toronto, Relativistic Electrodynamics course (PHY450H1S). This class was taught by Prof. Erich Poppitz, with Simon Freedman handling tutorials (which were excellent lecture style lessons). Official course description: Special Relativity, four-vector calculus and relativistic notation, the relativistic Maxwell's Equations, electromagnetic waves in vacuum and conducting and non-conducting materials, electromagnetic radiation from point charges and systems of charges. This document contains a few things * My lecture notes. Typos and errors are probably mine (Peeter), and no claim nor attempt of spelling or grammar correctness will be made. These notes track along with the Professor's hand written notes very closely, since his lectures follow his notes very closely. While I used the note taking exercise as a way to verify that I understood all the materials of the day, Professor Poppitz's notes are in many instances a much better study resource, since there are details in his notes that were left for us to read, and not necessarily covered in the lectures. On the other hand, there are details in these notes that I have added when I did not find his approach simplistic enough for me to grasp, or I failed to follow the details in class. * Some notes from reading of the text. * Some assigned problems.

Foundations of Classical Electrodynamics

Foundations of Classical Electrodynamics
Author: Friedrich W Hehl
Publisher: Springer Science & Business Media
Total Pages: 405
Release: 2012-12-06
Genre: Science
ISBN: 1461200512

In this book we display the fundamental structure underlying classical electro dynamics, i. e. , the phenomenological theory of electric and magnetic effects. The book can be used as a textbook for an advanced course in theoretical electrodynamics for physics and mathematics students and, perhaps, for some highly motivated electrical engineering students. We expect from our readers that they know elementary electrodynamics in the conventional (1 + 3)-dimensional form including Maxwell's equations. More over, they should be familiar with linear algebra and elementary analysis, in cluding vector analysis. Some knowledge of differential geometry would help. Our approach rests on the metric-free integral formulation of the conservation laws of electrodynamics in the tradition of F. Kottler (1922), E. Cartan (1923), and D. van Dantzig (1934), and we stress, in particular, the axiomatic point of view. In this manner we are led to an understanding of why the Maxwell equa tions have their specific form. We hope that our book can be seen in the classical tradition of the book by E. J. Post (1962) on the Formal Structure of Electro magnetics and of the chapter "Charge and Magnetic Flux" of the encyclopedia article on classical field theories by C. Truesdell and R. A. Toupin (1960), in cluding R. A. Toupin's Bressanone lectures (1965); for the exact references see the end of the introduction on page 11. .

Wave Propagation in Materials for Modern Applications

Wave Propagation in Materials for Modern Applications
Author: Andrey Petrin
Publisher: BoD – Books on Demand
Total Pages: 555
Release: 2010-01-01
Genre: Science
ISBN: 9537619656

In the recent decades, there has been a growing interest in micro- and nanotechnology. The advances in nanotechnology give rise to new applications and new types of materials with unique electromagnetic and mechanical properties. This book is devoted to the modern methods in electrodynamics and acoustics, which have been developed to describe wave propagation in these modern materials and nanodevices. The book consists of original works of leading scientists in the field of wave propagation who produced new theoretical and experimental methods in the research field and obtained new and important results. The first part of the book consists of chapters with general mathematical methods and approaches to the problem of wave propagation. A special attention is attracted to the advanced numerical methods fruitfully applied in the field of wave propagation. The second part of the book is devoted to the problems of wave propagation in newly developed metamaterials, micro- and nanostructures and porous media. In this part the interested reader will find important and fundamental results on electromagnetic wave propagation in media with negative refraction index and electromagnetic imaging in devices based on the materials. The third part of the book is devoted to the problems of wave propagation in elastic and piezoelectric media. In the fourth part, the works on the problems of wave propagation in plasma are collected. The fifth, sixth and seventh parts are devoted to the problems of wave propagation in media with chemical reactions, in nonlinear and disperse media, respectively. And finally, in the eighth part of the book some experimental methods in wave propagations are considered. It is necessary to emphasize that this book is not a textbook. It is important that the results combined in it are taken “from the desks of researchers“. Therefore, I am sure that in this book the interested and actively working readers (scientists, engineers and students) will find many interesting results and new ideas.

Modern Electrodynamics

Modern Electrodynamics
Author: Andrew Zangwill
Publisher: Cambridge University Press
Total Pages: 1005
Release: 2013
Genre: Science
ISBN: 0521896975

An engaging writing style and a strong focus on the physics make this graduate-level textbook a must-have for electromagnetism students.

Principles of Plasma Mechanics

Principles of Plasma Mechanics
Author: Bishwanath Chakraborty
Publisher: New Age International
Total Pages: 508
Release: 2007
Genre: Plasma (Ionized gases)
ISBN: 9788122414462

This Book Presents A Systematic Exposition Of The Fundamental Principles Involved In Plasma Mechanics. It Also Highlights Some Of The Recent Developments In The Area.The Book Emphasises The Following Topics: * Magnetization By Inverse Faraday Effect * Ionospheric Cross Modulation * Relativistic Vlasov Equations For Waves In Plasmas * Kinetic Theory Of Vlasov For Plasmoidal Equilibrium Structures * Formalism Of Transformation From Laboratory Frame To A Space Independent Frame For Study Of Dispersive Wave.With Its Comprehensive Approach And Detailed Treatment, The Book Would Serve As An Excellent Text For M.Sc. Physics Students As Well As Research Scholars.

Classical Relativistic Electrodynamics

Classical Relativistic Electrodynamics
Author: Toshiyuki Shiozawa
Publisher: Springer Science & Business Media
Total Pages: 238
Release: 2013-03-14
Genre: Science
ISBN: 3662062615

An advanced course of classical electrodynamics with application to the generation of high-power coherent radiation in the microwave to optical-wave regions. Specifically, it provides readers with the basics of advanced electromagnetic theory and relativistic electrodynamics, guiding them step by step through the theory of free-electron lasers. The theoretical treatment throughout this book is fully developed by means of the usual three-dimensional vector calculus.

Relativity in Rotating Frames

Relativity in Rotating Frames
Author: G. Rizzi
Publisher: Springer Science & Business Media
Total Pages: 462
Release: 2013-03-09
Genre: Science
ISBN: 9401705283

Even if the subject is a long-standing one, this is the first monograph on this field. On the one hand, this book is intended to give a rather wide review on this field, both in a historical and pedagogical perspective; on the other hand, it aims at critically re-examining and discussing the most controversial issues. For instance, according to some authors the celebrated Sagnac effect is a disproval of the theory of relativity applied to rotating frames; according to others, it is an astonishing experimental evidence of the relativistic theory. In order to give the reader a deeper insight into this research field, the contributing authors discuss their opinions on the main subjects in an enthralling virtual round table: in this way, the reader can get a direct comparison of the various viewpoints on the most controversial and interesting topics. This is particularly expedient, since the differences in the various approaches are often based upon subtleties that can be understood only by a direct comparison of the underlying hypotheses.