Semi-analytical algorithms to study longitudinal beam instabilities in double rf systems

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Gamelin, A., Gubaidulin, V., Alves, M. B., Olsson, T.
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912765965238272
author Gamelin, A.
Gubaidulin, V.
Alves, M. B.
Olsson, T.
author_facet Gamelin, A.
Gubaidulin, V.
Alves, M. B.
Olsson, T.
contents Double rf systems are critical for achieving the parameters of 4th-generation light sources. These systems, comprising both main and harmonic rf cavities, relax statistical collective effects but also introduce instabilities, such as Robinson and periodic transient beam loading (PTBL) instabilities. In this paper, we provide semi-analytical algorithms designed to predict and analyze these instabilities with improved accuracy and robustness. The algorithms leverage recent advancements in the field, offering a computationally efficient and accurate complement to multibunch tracking simulations. Using the SOLEIL II project as a case study, we demonstrate how these algorithms can optimize rf cavity parameters in high-dimensional parameter spaces, thereby maximizing the Touschek lifetime. An open-source Python package, ALBuMS (Algorithms for Longitudinal Multibunch Beam Stability), is provided as an accessible tool for double rf system stability analysis.
format Preprint
id arxiv_https___arxiv_org_abs_2412_06539
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Semi-analytical algorithms to study longitudinal beam instabilities in double rf systems
Gamelin, A.
Gubaidulin, V.
Alves, M. B.
Olsson, T.
Accelerator Physics
Double rf systems are critical for achieving the parameters of 4th-generation light sources. These systems, comprising both main and harmonic rf cavities, relax statistical collective effects but also introduce instabilities, such as Robinson and periodic transient beam loading (PTBL) instabilities. In this paper, we provide semi-analytical algorithms designed to predict and analyze these instabilities with improved accuracy and robustness. The algorithms leverage recent advancements in the field, offering a computationally efficient and accurate complement to multibunch tracking simulations. Using the SOLEIL II project as a case study, we demonstrate how these algorithms can optimize rf cavity parameters in high-dimensional parameter spaces, thereby maximizing the Touschek lifetime. An open-source Python package, ALBuMS (Algorithms for Longitudinal Multibunch Beam Stability), is provided as an accessible tool for double rf system stability analysis.
title Semi-analytical algorithms to study longitudinal beam instabilities in double rf systems
topic Accelerator Physics
url https://arxiv.org/abs/2412.06539