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Titlebook: Classical Mechanics and Electromagnetism in Accelerator Physics; Gennady Stupakov,Gregory Penn Textbook 2018 Springer International Publis

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楼主: Perforation
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Self Field of a Relativistic Beamd, the force exerted on the beam by this field can lead to beam instabilities and a deterioration of its properties in the process of beam generation, acceleration and transport. On the other hand, this field induces currents and charges in the beam environment that can be used for diagnostic purpos
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Effect of Environment on Electromagnetic Field of a Beamide a vacuum chamber, and one has to take into account the effect of the material walls of the chamber on the field. In this chapter, we study several important effects that characterize the interaction with metal walls. First, we discuss the skin effect that defines the penetration of the electroma
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Plane Electromagnetic Waves and Gaussian Beams approximately describe local properties of the real field far from the source of radiation. They can also be used as building blocks from which a general solution of Maxwell’s equations in free space can be constructed. An important practical example of electromagnetic radiation that finds many app
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Waveguides and RF Cavitiespropagate far from material boundaries. If this is not the case, one has to take into account the interaction of the electromagnetic field with the medium. In this chapter we will study one example that is especially important for accelerator applications, when the medium can be modeled as a perfect
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Joachim Klewes,Robert Wreschniokrrectly describe the field structure near the focus and the diffraction of the beam as it propagates away from the focal region. In this chapter, we will briefly summarize the main properties of plane electromagnetic waves, and then derive the field in a Gaussian beam.
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Plane Electromagnetic Waves and Gaussian Beamsrrectly describe the field structure near the focus and the diffraction of the beam as it propagates away from the focal region. In this chapter, we will briefly summarize the main properties of plane electromagnetic waves, and then derive the field in a Gaussian beam.
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