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The Theory of Coherent Radiation by Intense Electron Beams: Particle Acceleration and Detection

Autor Vyacheslov A. Buts, Andrey N. Lebedev, V.I. Kurilko
en Limba Engleză Hardback – 9 mai 2006
Spurred by the development of high-current, high-energy relativistic electron beams this books delves into the foundations of a device and geometry independent theoretical treatment of a large collection of interacting and radiating electron bunches. Part I deals with the basics of the radiation emission of a single charged particle, paying particular attention to the effect of radiation reaction and dwelling on the corresponding well-known paradoxes. Part II investigates the collective behaviour of a high-density electron bunch where both discrete and continous beam modelling is explored. Part III treats the application to modern systems while still keeping the treatment as general as possible.
This book will be mandatory reading for anyone working on the foundations of modern devices such as free electron lasers, plasma accelerators, synchroton sources and other modern sources of bright, coherent radiation with high spectral density.
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Specificații

ISBN-13: 9783540306894
ISBN-10: 3540306897
Pagini: 254
Ilustrații: XIV, 254 p.
Dimensiuni: 210 x 297 x 14 mm
Greutate: 0.57 kg
Ediția:2006
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Particle Acceleration and Detection

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Radiation by Single Particles.- Synchronous Wave–Particle Interaction.- Radiation Emitted by Particle Moving Uniformly.- Microwave Bremsstrahlung.- Radiation Reaction.- Radiation by Particles Ensembles.- Coherence of Individual Emitters.- Spontaneous and Stimulated Emission.- Proper Waves in Flows of Charged Particles.- Certain Modern Applications.- Cherenkov Radiation in Beam–Plasma Systems.- Cyclotron Resonance Masers (CRM).- Free Electron Lasers (FELs).- Blowup Effect in Linear Accelerators.

Textul de pe ultima copertă

Spurred by the development of high-current, high-energy relativistic electron beams this books delves into the foundations of a device and geometry independent theoretical treatment of a large collection of interacting and radiating electron bunches. Part I deals with the basics of the radiation emission of a single charged particle, paying particular attention to the effect of radiation reaction and dwelling on the corresponding well-known paradoxes. Part II investigates the collective behaviour of a high-density electron bunch where both discrete and continous beam modelling is explored. Part III treats the application to modern systems while still keeping the treatment as general as possible.
This book will be mandatory reading for anyone working on the foundations of modern devices such as free electron lasers, plasma accelerators, synchroton sources and other modern sources of bright, coherent radiation with high spectral density.