Avoiding Beam Instabilities and Resonances With Circular Modes

Fuente: arXiv
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Main Authors: Gilanliogullari, Onur, Mustapha, Brahim, Snopok, Pavel
Format: Preprint
Published: 2025
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author Gilanliogullari, Onur
Mustapha, Brahim
Snopok, Pavel
author_facet Gilanliogullari, Onur
Mustapha, Brahim
Snopok, Pavel
contents Beam instabilities and resonances affect the transverse dynamics in particle accelerators and, when encountered, can trigger emittance growth and beam loss. Resonance lines originate from non linear elements and effects in the lattice, imposing strict constraints on the choice of working points and narrowing the available tune space. Circular modes are round coupled beams with non zero angular momentum, provide an alternative beam motion and dynamics. In this study, we derive the third-order sextupole resonance conditions in the coupled (normal-mode) parametrization and show that, with circular-mode lattice design and beam operation, most of these resonance lines are naturally suppresses due to the inherent flatness of the mode.
format Preprint
id arxiv_https___arxiv_org_abs_2509_07694
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Avoiding Beam Instabilities and Resonances With Circular Modes
Gilanliogullari, Onur
Mustapha, Brahim
Snopok, Pavel
Accelerator Physics
Beam instabilities and resonances affect the transverse dynamics in particle accelerators and, when encountered, can trigger emittance growth and beam loss. Resonance lines originate from non linear elements and effects in the lattice, imposing strict constraints on the choice of working points and narrowing the available tune space. Circular modes are round coupled beams with non zero angular momentum, provide an alternative beam motion and dynamics. In this study, we derive the third-order sextupole resonance conditions in the coupled (normal-mode) parametrization and show that, with circular-mode lattice design and beam operation, most of these resonance lines are naturally suppresses due to the inherent flatness of the mode.
title Avoiding Beam Instabilities and Resonances With Circular Modes
topic Accelerator Physics
url https://arxiv.org/abs/2509.07694