Analytical model of impedance in elliptical beam pipes

Arthur Pesah, Benoît Salvant, Nicolo Biancacci

semanticscholar(2017)

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摘要
Beam instabilities are among the main limitations in building higher intensity accelerators. Having a good impedance model for every accelerators is necessary in order to build components that minimize the probability of instabilities caused by the interaction beam-environment and to understand what piece to change in case of intensity increasing. Most of accelerator components have their impedance simulated with finite elements method (using softwares like CST Studio), but simple components such as circular or flat pipes are modeled analytically, with a decreasing computation time and an increasing precision compared to their simulated model. Elliptical beam pipes, while being a simple component present in some accelerators, still misses a good analytical model working for the hole range of velocities and frequencies. In this report, we present a general framework to study the impedance of elliptical pipes analytically. We developed a model for both longitudinal and transverse impedance, first in the case of a perfectly conduction pipe, then taking resistivity into account. We compared our results in the limit cases of a round pipe and a flat pipe with existing models for those two components, and showed that they are identical for longitudinal and quadrupolar impedance, but slightly different for dipolar impedance.
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