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Muon Acceleration-RLA and FFAG

Authors :
S. Alex Bogacz
B. S. Acharya
Maury Goodman
Naba K. Mondal
Source :
AIP Conference Proceedings.
Publication Year :
2011
Publisher :
AIP, 2011.

Abstract

Various acceleration schemes for muons are presented. The overall goal of the acceleration systems: large acceptance acceleration to 25 GeV and ‘beam shaping’ can be accomplished by various fixed field accelerators at different stages. They involve three superconducting linacs: a single pass linear Pre‐accelerator followed by a pair of multi‐pass Recirculating Linear Accelerators (RLA) and finally a non—scaling FFAG ring. The present baseline acceleration scenario has been optimized to take maximum advantage of appropriate acceleration scheme at a given stage. The solenoid based Pre‐accelerator offers very large acceptance and facilitates correction of energy gain across the bunch and significant longitudinal compression trough induced synchrotron motion. However, far off‐crest acceleration reduces the effective acceleration gradient and adds complexity through the requirement of individual RF phase control for each cavity. The RLAs offer very efficient usage of high gradient superconducting RF and ability to adjust path‐length after each linac pass through individual return arcs with uniformly periodic FODO optics suitable for chromatic compensation of emittace dilution with sextupoles. However, they require spreaders/recombiners switchyards at both linac ends and significant total length of the arcs. The non‐scaling Fixed Field Alternating Gradient (FFAG) ring combines compactness with very large chromatic acceptance (twice the injection energy) and it allows for large number of passes through the RF (at least eight, possibly as high as 15).

Details

ISSN :
0094243X
Database :
OpenAIRE
Journal :
AIP Conference Proceedings
Accession number :
edsair.doi...........0905ce8adb9a36d0416582616386fceb
Full Text :
https://doi.org/10.1063/1.3644312