DocumentCode :
2885079
Title :
The cornell erl superconducting 2-cell injector cavity string and test cryomodule
Author :
Liepe, M. ; Belomestnykh, S. ; Chojnacki, E. ; Medjidzade, V. ; Padamsee, H. ; Quigley, P. ; Sears, J. ; Shemelin, V. ; Veshcherevich, V.
Author_Institution :
Cornell Univ., Ithaca
fYear :
2007
fDate :
25-29 June 2007
Firstpage :
2572
Lastpage :
2574
Abstract :
Cornell University is developing and fabricating a SRF injector cryomodule for the acceleration of the high current (100 iriA) beam in the Cornell ERL prototype and ERL light source. Major challenges include emittance preservation of the low energy, ultra low emittance beam, cw cavity operation, and strong HOM damping with efficient HOM power extraction. Prototypes have been completed for the 2-cell niobium cavity with helium vessel, coaxial blade tuner with piezo fine tuners, twin high power input couplers, and beam line HOM absorbers loaded with fer- rites and ceramics. Axial symmetry of HOM absorbers, together with two symmetrically placed input couplers per cavity, avoids transverse on-axis fields, which would cause emittance growth. A one-cavity cryostat has been designed following concepts of the TTF cryostat, and is presently under fabrication and assembly. The cryostat design has been optimized for precise cavity alignment, good magnetic shielding, and high dynamic cryogenic loads from the RF cavities, input couplers, and HOM loads. In this paper we report on the status of the assembly and first test of the one-cavity test cryostat.
Keywords :
accelerator RF systems; accelerator cavities; cryostats; particle beam injection; 2-cell niobium cavity; Cornell ERL superconducting 2-cell injector cavity; ERL light source; RF cavities; SRF injector cryomodule; beam line HOM absorbers; coaxial blade tuner; cw cavity operation; low energy ultralow emittance beam; one-cavity cryostat; strong HOM damping; Acceleration; Assembly; Couplers; Damping; Light sources; Niobium; Particle beams; Prototypes; Testing; Tuners;
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.2007.4440368
Filename :
4440368
Link To Document :
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