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Titlebook: Classical Relativistic Electrodynamics; Theory of Light Emis Toshiyuki Shiozawa Book 2004 Springer-Verlag Berlin Heidelberg 2004 Classical

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书目名称Classical Relativistic Electrodynamics
副标题Theory of Light Emis
编辑Toshiyuki Shiozawa
视频video
概述Valuable tutorial-style presentation of both the theoretical basis of new acceleration systems and their application to free electron lasers
丛书名称Advanced Texts in Physics
图书封面Titlebook: Classical Relativistic Electrodynamics; Theory of Light Emis Toshiyuki Shiozawa Book 2004 Springer-Verlag Berlin Heidelberg 2004 Classical
描述.Classical Relativistic Electrodynamics presents 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. This book can be recommended as a graduate-level textbook or a reference book in the fields of advanced electromagnetic theory, relativistic electrodynamics, beam physics and plasma sciences. .
出版日期Book 2004
关键词Classical electrodynamics; Free-electron lasers; Plasma; Relativistic electrodynamics; Relativistic elec
版次1
doihttps://doi.org/10.1007/978-3-662-06261-6
isbn_softcover978-3-642-05834-9
isbn_ebook978-3-662-06261-6Series ISSN 1439-2674
issn_series 1439-2674
copyrightSpringer-Verlag Berlin Heidelberg 2004
The information of publication is updating

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Radiation from a Moving Charged Particle, vector potential .,. a source producing the field Ψ, and . the speed of light in an unbounded non-dispersive medium with permittivity ε and permeability .. In order to solve the inhomogeneous wave equation in an unbounded region, we will try to find a time-dependent Green function corresponding to
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Single-Particle Theory of the Free-Electron Laser, the frequency spectrum of electromagnetic waves emitted from an electron traveling in an array of permanent magnets called an undulator [6.4]. Immediately after that, Phillips succeeded in generating high-power millimeter waves, using an undulator [6.5]. Since then, we had to wait for a while befor
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Collective Theory of the Free-Electron Laser,f energy transfer from the kinetic energy of a relativistic electron beam to the electromagnetic wave energy. The amplification mechanism for the free-electron laser can be explained on the basis of the models of stimulated scattering of electromagnetic waves by a relativistic electron beam, namely,
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FDTD Analysis of Beam-Wave Interaction,lectron beam, as described in the foregoing chapters. However, it is very difficult to clarify the details of complicated beam-wave interactions, which are generally nonlinear in essence, only with the aid of purely theoretical approaches based upon either of these models. In fact, with the rapid de
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