Transverse beam instabilities in low-emittance booster synchrotrons

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Foosang, W., Gamelin, A., Gubaidulin, V., Nagaoka, R.
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916874149691392
author Foosang, W.
Gamelin, A.
Gubaidulin, V.
Nagaoka, R.
author_facet Foosang, W.
Gamelin, A.
Gubaidulin, V.
Nagaoka, R.
contents As the ring-based light source community is moving towards fourth-generation light sources, many facilities plan to upgrade their boosters in parallel to meet the more demanding beam properties for the storage ring, especially in terms of a much lower emittance. Concerns over collective effects have, therefore, risen, particularly in the transverse planes, since the vacuum chamber dimensions tend to be reduced as a way to achieve a stronger focusing force on the beam. In this article, we present numerical studies on transverse beam instabilities, both in the single- and multibunch regimes, in the SOLEIL II booster as an example of a low-emittance booster. We show that Landau damping is an efficient mechanism for suppressing both transverse single-bunch and coupled-bunch instabilities. We also prove that the damping in the longitudinal plane can diffuse to the transverse plane and limit the transverse emittance growth. Moreover, we have discovered that the beam can exhibit sawtooth instability at high energy and that broad-band impedance is one of the key factors in suppressing transverse coupled-bunch instability.
format Preprint
id arxiv_https___arxiv_org_abs_2410_04125
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Transverse beam instabilities in low-emittance booster synchrotrons
Foosang, W.
Gamelin, A.
Gubaidulin, V.
Nagaoka, R.
Accelerator Physics
As the ring-based light source community is moving towards fourth-generation light sources, many facilities plan to upgrade their boosters in parallel to meet the more demanding beam properties for the storage ring, especially in terms of a much lower emittance. Concerns over collective effects have, therefore, risen, particularly in the transverse planes, since the vacuum chamber dimensions tend to be reduced as a way to achieve a stronger focusing force on the beam. In this article, we present numerical studies on transverse beam instabilities, both in the single- and multibunch regimes, in the SOLEIL II booster as an example of a low-emittance booster. We show that Landau damping is an efficient mechanism for suppressing both transverse single-bunch and coupled-bunch instabilities. We also prove that the damping in the longitudinal plane can diffuse to the transverse plane and limit the transverse emittance growth. Moreover, we have discovered that the beam can exhibit sawtooth instability at high energy and that broad-band impedance is one of the key factors in suppressing transverse coupled-bunch instability.
title Transverse beam instabilities in low-emittance booster synchrotrons
topic Accelerator Physics
url https://arxiv.org/abs/2410.04125