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Intense Electron and Ion Beams

Intense Electron and Ion Beams
Author: Sergey Ivanovich Molokovsky
Publisher: Springer Science & Business Media
Total Pages: 285
Release: 2005-11-28
Genre: Science
ISBN: 3540288120

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Intense Ion and Electron Beams treats intense charged-particle beams used in vacuum tubes, particle beam technology and experimental installations such as free electron lasers and accelerators. It addresses, among other things, the physics and basic theory of intense charged-particle beams; computation and design of charged-particle guns and focusing systems; multiple-beam charged-particle systems; and experimental methods for investigating intense particle beams. The coverage is carefully balanced between the physics of intense charged-particle beams and the design of optical systems for their formation and focusing. It can be recommended to all scientists studying or applying vacuum electronics and charged-particle beam technology, including students, engineers, and researchers.


Physics of Intense Beams in Plasmas

Physics of Intense Beams in Plasmas
Author: M.V Nezlin
Publisher: Routledge
Total Pages: 336
Release: 2017-10-19
Genre: Science
ISBN: 1351424432

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Physics of Intense Beams in Plasmas is a comprehensive description of the interaction between extremely intense particle beams and plasmas. The emphasis is on experimental beam-plasma physics, but the necessary theory is also explained-much of which is innovative and original. Central to the book is the discussion of beam instabilities, emphasizing their hydrodynamic nature.


An Introduction to the Physics of Intense Charged Particle Beams

An Introduction to the Physics of Intense Charged Particle Beams
Author: R. Miller
Publisher: Springer Science & Business Media
Total Pages: 356
Release: 2012-12-06
Genre: Science
ISBN: 1468411284

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An intense charged particle beam can be characterized as an organized charged particle flow for which the effects of beam self-fields are of major importance in describing the evolution of the flow. Research employing such beams is now a rapidly growing field with important applications ranging from the development of high power sources of coherent radiation to inertial confinement fusion. Major programs have now been established at several laboratories in the United States and Great Britain, as well as in the USSR, Japan, and several Eastern and Western European nations. In addition, related research activities are being pursued at the graduate level at several universities in the US and abroad. When the author first entered this field in 1973 there was no single reference text that provided a broad survey of the important topics, yet contained sufficient detail to be of interest to the active researcher. That situation has persisted, and this book is an attempt to fill the void. As such, the text is aimed at the graduate student, or beginning researcher; however, it contains ample information to be a convenient reference source for the advanced worker.


Introduction to Focused Ion Beams

Introduction to Focused Ion Beams
Author: Lucille A. Giannuzzi
Publisher: Springer Science & Business Media
Total Pages: 362
Release: 2006-05-18
Genre: Science
ISBN: 038723313X

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Introduction to Focused Ion Beams is geared towards techniques and applications. This is the only text that discusses and presents the theory directly related to applications and the only one that discusses the vast applications and techniques used in FIBs and dual platform instruments.


Large Ion Beams

Large Ion Beams
Author: A. Theodore Forrester
Publisher: Wiley-VCH
Total Pages: 360
Release: 1988-05-02
Genre: Science
ISBN:

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Magneto-Solid Mechanics Francis C. Moon Comprehensively treats, in monograph form, problems directly related to magneto-solid mechanics. Provides a thoroughly modern examination of the stresses, dynamics, and stability of magneto-mechanical devices such as superconducting magnets, levitated vehicles, magnetic mass drivers, electromagnets, and actuators. Over 60 specific coupled-magneto-mechanical problems are discussed and analyzed, and well over 200 illustrations are included. Physical concepts are introduced early, along with summaries of the basic equations of magneto-solid mechanics, magnetic forces, and energy. 1984 (0 471-88536-3) 436 pp. Chaotic Vibrations An Introduction for Applied Scientists and Engineers Francis C. Moon A valuable work which helps to translate new mathematical ideas in non-linear dynamics and chaos into a language that engineers and scientists can understand. As such it provides specific examples and applications of chaotic dynamics in the physical world and describes how to perform both computer and physical experiments in chaotic dynamics. New ideas in dynamics are explained such as Poincare maps, fractal dimensions and Lyapunov exponents. Includes a glossary of chaotic dynamics terms, a list of computer experiments, and an appendix of details for a demonstration experiment. 1987 (0 471-85685-1) 300 pp.


Basic Atomic Interactions of Accelerated Heavy Ions in Matter

Basic Atomic Interactions of Accelerated Heavy Ions in Matter
Author: Inga Tolstikhina
Publisher: Springer
Total Pages: 220
Release: 2018-02-28
Genre: Science
ISBN: 3319749927

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This book provides an overview of the recent experimental and theoretical results on interactions of heavy ions with gaseous, solid and plasma targets from the perspective of atomic physics. The topics discussed comprise stopping power, multiple-electron loss and capture processes, equilibrium and non-equilibrium charge-state fractions in penetration of fast ion beams through matter including relativistic domain. It also addresses mean charge-states and equilibrium target thickness in ion-beam penetrations, isotope effects in low-energy electron capture, lifetimes of heavy ion beams, semi-empirical formulae for effective cross sections. The book is intended for researchers and graduate students working in atomic, plasma and accelerator physics.


Materials Research with Ion Beams

Materials Research with Ion Beams
Author: Horst Schmidt-Böcking
Publisher: Springer Science & Business Media
Total Pages: 210
Release: 2013-06-29
Genre: Technology & Engineering
ISBN: 3662027941

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Due to new technological progress in the development of ion sources and accelerators interesting kinds of beams are now available. They open new fields for materials research with ion beams. The present status and future possibilities of these research activities are described by experts on this field in the form of review articles. The papers presented in the book focus on very different aspects ranging from the field of truly appliedresearch to the field of fundamental atomic research investigating interaction mechanisms of slow, highly charged particles with surfaces. The book is intended to provide a source of information about recent developments in basic research for the physicists about the status ofthe input of their work into applied materials science. In addition, also other well established techniques, such as Rutherford backscattering analysis and their use in materials research such as of HTC are described. The reader of this book will benefit from its broad view over the various methods of materilas research with ion beams.


Physics of Intense Beams in Plasmas

Physics of Intense Beams in Plasmas
Author: M.V Nezlin
Publisher: CRC Press
Total Pages: 336
Release: 1993-01-01
Genre: Science
ISBN: 9780750301862

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Physics of Intense Beams in Plasmas is a comprehensive description of the interaction between extremely intense particle beams and plasmas. The emphasis is on experimental beam-plasma physics, but the necessary theory is also explained-much of which is innovative and original. Central to the book is the discussion of beam instabilities, emphasizing their hydrodynamic nature.


Physics Of Intense Charged Particle Beams In High Energy Accelerators

Physics Of Intense Charged Particle Beams In High Energy Accelerators
Author: Ronald C Davidson
Publisher: World Scientific
Total Pages: 603
Release: 2001-10-22
Genre: Science
ISBN: 1911298186

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Physics of Intense Charged Particle Beams in High Energy Accelerators 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. This is particularly important at the high beam intensities envisioned for present and next generation accelerators, colliders and transport systems for high energy and nuclear physics applications and for heavy ion fusion. 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, and extensive use is made of theoretical techniques developed in the description of one-component nonneutral plasmas, and multispecies electrically-neutral plasmas, as well as established techniques in accelerator physics, classical mechanics, electrodynamics and statistical physics.Physics of Intense Charged Particle Beams in High Energy Accelerators emphasizes basic physics principles, and the thorough presentation style is intended to have a lasting appeal to graduate students and researchers alike. Because of the advanced theoretical techniques developed for describing one-component charged particle systems, a useful companion volume to this book is Physics of Nonneutral Plasmas by Ronald C Davidson./a