DocumentCode
2901830
Title
JLAB high-current CW cryomodules for ERL and FEL applications
Author
Rimmer, R.A. ; Bundy, R. ; Cheng, G. ; Ciovati, G. ; Daly, E.F. ; Getz, R. ; Henry, J. ; Hicks, W.R. ; Kneisel, P. ; Manning, S. ; Manus, R. ; Marhauser, F. ; Smith, K. ; Stirbet, M. ; Turlington, L. ; Vogel, L. ; Wang, H. ; Wilson, K.M.
Author_Institution
Jefferson Lab., Newport News
fYear
2007
fDate
25-29 June 2007
Firstpage
2493
Lastpage
2495
Abstract
We describe the activities underway at JLab to develop new CW cryomodules capable of transporting up to Ampere-levels of beam currents for use in ERLs and FELs. Goals include an efficient cell shape, high packing factor for efficient real-estate gradient and very strong HOM damping to push BBU thresholds up by two or more orders of magnitude compared to existing designs. Cavity shape, HOM damping and ancillary components are optimized for this application. Designs are being developed for low-frequency (750 MHz), Ampere-class compact FELs and for high-frequency (1.5 GHz), 100 mA configurations. These designs and concepts can easily be scaled to other frequencies. We present the results of conceptual design studies, simulations and prototype measurements. These modules are being developed for the next generation ERL based high power FELs but may be useful for other applications such as high energy light sources, electron cooling, electron-ion colliders, industrial processing etc.
Keywords
cryogenics; free electron lasers; linear accelerators; particle beam diagnostics; ERL; FEL; HOM damping; beam currents; cell shape; current 100 mA; electron cooling; electron-ion colliders; energy-recovery linacs; frequency 1.5 GHz; frequency 750 MHz; high-current CW cryomodules; industrial processing; light sources; Couplers; Damping; Frequency synchronization; Light sources; Loaded waveguides; Prototypes; Radio frequency; Shape; Temperature; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Particle Accelerator Conference, 2007. PAC. IEEE
Conference_Location
Albuquerque, NM
Print_ISBN
978-1-4244-0916-7
Type
conf
DOI
10.1109/PAC.2007.4441294
Filename
4441294
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