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Titlebook: High-Brightness Accelerators; Anthony K. Hyder,M. Franklin Rose,Arthur H. Guenth Book 1988 Plenum Press, New York 1988 density.dynamics.el

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T. S. Green.e. calculation of deformations, stresses, natural vibration frequencies, buckling loads, etc. In view of the development and construction of machines and system components the question arises which measures must be taken in order to reduce costs . to improve quality and reliability; in other words
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Brightness, Emittance and Temperaturecan orders of magnitude in energy, current, and particle mass, from electrons to uranium ions. The behaviour of some of these beams, especially when self-fields are large and interaction with walls or background plasma is significant, can be extremely complex. Conditions can vary markedly along the
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Historical Overview of High-Brightness Acceleratorssely connected with intensity as with energy, particularly in fields other than particle physics, in which energy is at a premium. Even here, the relatively new (or perhaps reawakened) interest in colliding beams has been a strong incentive to work on raising intensity and brightness.
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High-Intensity Circular Proton Accelerators. This paper discusses considerations affecting the design of such machines for high intensity, especially space charge effects and the role of beam brightness in multistage accelerators. Current plans for building a new generation of high intensity “kaon factories” are reviewed.
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High-Brightness Circular Acceleratorson so that the adiabatic or drift approximation is valid. This is illustrated in Fig. 1 where the particles follow the helical field lines except for slow drifts of the guiding center. The small oscillations shown are the cyclotron motion which is averaged out, i.e., it does not appear in the approx
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