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OverviewThis is a graduate-level text - complete with 75 assigned problems - which covers a broad range of topics related to the fundamental properties of collective processes and nonlinear dynamics of intense charged particle beams in periodic focusing accelerators and transport systems. The subject matter is treated systematically from first principles, using a unified theoretical approach, and the emphasis is on the development of basic concepts that illustrate the underlying physical processes in circumstances where intense self fields play a major role in determining the evolution of the system. The theoretical analysis includes the full influence of dc space charge and intense self-field effects on detailed equilibrium, stability and transport properties, and is valid over a wide range of system parameters ranging from moderate-intensity, moderate-emittance beams to very-high-intensity, low-emittance beams. The statistical models used to describe the properties of intense charged particle beams are based on the Vlasov-Maxwell equations, the macroscopic fluid-Maxwell equations, or the Klimontovich-Maxwell equations, as appropriate. Full Product DetailsAuthor: Ronald C Davidson (Princeton Univ, Usa) , Qin Hong (Princeton Univ, Usa) , Hong Qin (Plasma Physics Laboratory and Department of Astrophysical Sciences, Princeton University, USA)Publisher: Imperial College Press Imprint: Imperial College Press ISBN: 9781860943003ISBN 10: 1860943004 Pages: 604 Publication Date: 23 October 2001 Audience: College/higher education , Professional and scholarly , Undergraduate , Postgraduate, Research & Scholarly Format: Hardback Publisher's Status: Active Availability: Out of stock The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available. Table of ContentsTheoretical Models of Intense Non-neutral Particle Beams; Particle Orbits in Periodic Focusing Field Configurations; Nonlinear Kinetic Stability Theorem, Vlasov-Maxwell Description of Periodically-Focused Intense Beam Equilibria; Statistically-Averaged Rate Equations; Hamiltonian Averaging Techniques Applied to the Nonlinear Vlasov-Maxwell Equations; Kinetic Stability Properties and Collective Oscillations in Intense Particle Beams; Warm-Fluid Stability Properties and Collective Oscillations in Intense Particle Beams; Special Topics on Intense Beam Propagation.ReviewsAuthor InformationTab Content 6Author Website:Countries AvailableAll regions |
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