Space Charge Physics for Particle Accelerators
Softcover reprint of the original 1st ed. 2017
by
Ingo Hofmann
Book Details
Format
Paperback / Softback
Book Series
Particle Acceleration and Detection
ISBN-10
3319872443
ISBN-13
9783319872445
Edition
Softcover reprint of the original 1st ed. 2017
Publisher
Springer International Publishing AG
Imprint
Springer International Publishing AG
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Aug 11th, 2018
Print length
154 Pages
Weight
294 grams
Dimensions
23.40 x 15.60 x 1.10 cms
Product Classification:
Scientific standardsScientific standards, measurement etcScientific standards, measurement etcMensuration & systems of measurementParticle & high-energy physicsParticle and high-energy physicsMathematical / Computational / Theoretical physicsMathematical physicsTechnical designComputer modelling & simulationComputer modelling and simulation
Ksh 13,500.00
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Understanding and controlling the physics of space charge effects in linear and circular proton and ion accelerators are essential to their operation, and to future high-intensity facilities.
Understanding and controlling the physics of space charge effects in linear and circular proton and ion accelerators are essential to their operation, and to future high-intensity facilities. This book presents the status quo of this field from a theoretical perspective, compares analytical approaches with multi-particle computer simulations and – where available – with experiments. It discusses fundamental concepts of phase space motion, matched beams and modes of perturbation, along with mathematical models of analysis – from envelope to Vlasov-Poisson equations. The main emphasis is on providing a systematic description of incoherent and coherent resonance phenomena; parametric instabilities and sum modes; mismatch and halo; error driven resonances; and emittance exchange due to anisotropy, as well as the role of Landau damping. Their distinctive features are elaborated in the context of numerous sample simulations, and their potential impacts on beam quality degradation andbeam loss are discussed. The book is intended for advanced beginners in accelerator research, and for experts interested in the mechanisms of direct space charge interaction and their modeling.
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