Speaker
Gustavo Perez Segurana
(MAX IV Laboratory)
Description
Multi-bend achromat lattices allow for the design of extremely low-emittance electron storage rings and are a cornerstone of the performance of storage-ring-based synchrotron light sources. As part of the proposed MAX IV upgrade, MAX4U, we revise the impact of the insertion devices (IDs) on the beam. We extend the kickmap-based tracking analysis by including the effects of radiation and quantify the resilience of the proposed achromats to the different ID settings and configurations. Finally, we present mitigation strategies, both local to each ID and global, that may be tested experimentally in the current MAX IV 3 GeV ring.
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Author
Gustavo Perez Segurana
(MAX IV Laboratory)
Co-authors
Hamed Tarawneh
(MAX IV Laboratory)
Johan Bengtsson
(MAX IV Laboratory)
Magnus Sjöström
(MAX IV Laboratory)
Marco Apollonio
(MAX IV Laboratory)
Pedro Tavares
(MAX IV Laboratory)
Sara Thorin
(MAX IV Laboratory)