Longitudinal beam dynamics with active cavity systems

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Li, Chao, Chae, Yong-Chul, Pfeiffer, Sven, Christou, Chris
Format: Preprint
Published: 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866918526029135872
author Li, Chao
Chae, Yong-Chul
Pfeiffer, Sven
Christou, Chris
author_facet Li, Chao
Chae, Yong-Chul
Pfeiffer, Sven
Christou, Chris
contents In storage-ring-based light sources, harmonic cavities are commonly employed to lengthen the bunch, thereby mitigating collective effects and increasing beam lifetime. While this dual-RF configuration provides important benefits, it also introduces additional challenges. In particular, the impedance of the fundamental cavity modes can drive the beam into a longitudinal coupled-bunch unstable regime. To mitigate this effect, low-level RF (LLRF) feedback is introduced to reduce the effective impedance experienced by the beam. This work investigates longitudinal beam dynamics in the PETRA-IV dual-RF system with normal-conducting cavities, explicitly accounting for the LLRF feedback loop. Both analytical modeling and numerical simulations are used to characterize the onset and growth of coupled-bunch instabilities. The results show that, with appropriately chosen LLRF parameters, the destabilizing effect of the cavity fundamental mode can be effectively suppressed, enabling stable operation of the storage ring at the design beam current. This work highlights the critical role of RF feedback systems in ensuring robust longitudinal stability, thereby supporting the realization of PETRA-IV design goals and contributing to the development of next-generation synchrotron light sources, where high brilliance and operational reliability are essential.
format Preprint
id arxiv_https___arxiv_org_abs_2605_27613
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Longitudinal beam dynamics with active cavity systems
Li, Chao
Chae, Yong-Chul
Pfeiffer, Sven
Christou, Chris
Accelerator Physics
In storage-ring-based light sources, harmonic cavities are commonly employed to lengthen the bunch, thereby mitigating collective effects and increasing beam lifetime. While this dual-RF configuration provides important benefits, it also introduces additional challenges. In particular, the impedance of the fundamental cavity modes can drive the beam into a longitudinal coupled-bunch unstable regime. To mitigate this effect, low-level RF (LLRF) feedback is introduced to reduce the effective impedance experienced by the beam. This work investigates longitudinal beam dynamics in the PETRA-IV dual-RF system with normal-conducting cavities, explicitly accounting for the LLRF feedback loop. Both analytical modeling and numerical simulations are used to characterize the onset and growth of coupled-bunch instabilities. The results show that, with appropriately chosen LLRF parameters, the destabilizing effect of the cavity fundamental mode can be effectively suppressed, enabling stable operation of the storage ring at the design beam current. This work highlights the critical role of RF feedback systems in ensuring robust longitudinal stability, thereby supporting the realization of PETRA-IV design goals and contributing to the development of next-generation synchrotron light sources, where high brilliance and operational reliability are essential.
title Longitudinal beam dynamics with active cavity systems
topic Accelerator Physics
url https://arxiv.org/abs/2605.27613