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HOM Damping in Multi-Cell Superconducting Cavities for the Future Electron Source BriXSinO

Authors :
Samsam, Sanae
Bacci, Alberto
Bosotti, Angelo
Curatolo, Camilla
Drebot, Illya
Giove, Dario
Masullo, Maria Rosaria
Monaco, Laura
Paparella, Rocco
Passarelli, Andrea
Petrillo, Vittoria
Rossetti Conti, Marcello
Rossi, Andrea
Serafini, Luca
Sertore, Daniele
Publication Year :
2022
Publisher :
JACoW Publishing, Geneva, Switzerland, 2022.

Abstract

High order modes (HOMs) in multi-cell superconducting cavities are of particular concern in beam dynamics of linear accelerators, mainly those operating in CW mode with high current and high repetition rate. These undesired modes may invoke beam instabilities, beam breakup and increase the energy spread if not correctly pulled out and damped. The study reported in this paper is applied for damping the HOMs in the main Linac of BriXSinO, an ongoing project of an Energy Recovery Linac at LASA INFN laboratory. We developed a numerical model to study the interaction of monopole HOMs with the beam in long timescale. The presented model, named HOMEN (High Order Modes Evolution based on eNergy budget), allows the evaluation of the loss factor Kloss, crucial for evaluating the perturbing modes. At the same time, electromagnetic simulations of the standing wave multicell cavity, highlighted the dangerous modes and revealed a tolerable beam energy spread induced by HOMs. This method allows us to distinguish all dangerous modes of our interest for implementing the necessary damping mechanisms.<br />Proceedings of the 31st International Linear Accelerator Conference, LINAC2022, Liverpool, UK

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi...........8e389490d5f32d06e281ae77f9de4c4a
Full Text :
https://doi.org/10.18429/jacow-linac2022-thpojo25