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The Physics of Free Electron Lasers: Advanced Texts in Physics

Autor E.L. Saldin, E.V. Schneidmiller, M.V. Yurkov
en Limba Engleză Hardback – 22 noi 1999
This book contains a systematic treatment of the basic principles of free elec­ tron laser (FEL) physics. It is primarily intended for physicists specializing in FEL physics and related fields: laser physics, microwave electronics, particle accelerator physics, etc. At the same time it might be useful for those who use the FEL as a research or industrial tool. The treatment requires that the reader has a knowledge of classical me­ chanics and electrodynamics. It is assumed that the reader is familiar with the kinetic theory of charged particle beams, in particular the Vlasov equa­ tion. All the results presented here are derived from "first principles", and all steps involving physical principles are given. To preserve a self-consistent style, we place the derivation of auxiliary results in appendices. Theoretical study is performed with an extensive use of similarity tech­ niques, so the results obtained are simultaneously highly general and com­ pletely specified. The use of similarity techniques involves a particular way of thinking and leads to a deeper insight into FEL physics. We use a synthetic approach to present the material: some simple models are studied first, and more complicated ones are introduced gradually. We start with the one-dimensional theory of the FEL amplifier and FEL oscilla­ tor. Then we move on the analysis of diffraction effects and waveguide effects. Finally, we introduce the reader to the part of FEL theory dealing with the start-up from shot noise in the electron beam.
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Specificații

ISBN-13: 9783540662662
ISBN-10: 3540662669
Pagini: 484
Ilustrații: X, 470 p.
Dimensiuni: 155 x 235 x 30 mm
Greutate: 0.74 kg
Ediția:2000
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Advanced Texts in Physics

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Graduate

Cuprins

1. Introduction.- 2. One-Dimensional Theory of the FEL Amplifier.- 3. One-Dimensional Theory of the FEL Oscillator.- 4. Diffraction Effects in the FEL Amplifier.- 5. Waveguide FELs.- 6. FEL Amplifier Start-up from Shot Noise.- Appendices.- A.1 The Extended Hamiltonian Formalism.- A.2 Longitudinal Space Charge Field of a Modulated Electron Beam with Finite Transverse Size.- A.3 Green’s Function for a Homogeneous Waveguide.- A.4 Eigenfunctions of a Passive Circular Waveguide.- A.5 Calculation of the Sums in (5.119).- A.6 List of Symbols.- Suggested Further Reading.- References.

Textul de pe ultima copertă

The free electron laser (FEL) will be an outstanding tool for research and industrial application. This book describes the physical fundamentals on the basis of classical mechanics, electrodynamics, and the kinetic theory of charged particle beams, and will be suitable for graduate students and scientists alike.
After a short introduction, the book discusses the theory of the FEL amplifier and oscillator and diffraction effects in the amplifier. Waveguide FEL and shot noise are also treated.

Caracteristici

The free electron laser will play a crucial role in the beginning 21st century This book describes consistently all aspects of the free electron laser This book is up to date and unique The authors are leading experts Includes supplementary material: sn.pub/extras