DocumentCode
409012
Title
OTR studies for the high charge CTF3 beam
Author
Bravin, E. ; Lefevre, T. ; Vermare, C.
Author_Institution
CERN, Geneva, Switzerland
Volume
4
fYear
2003
fDate
12-16 May 2003
Firstpage
2464
Abstract
The CTF3 (CLIC Test Facility 3) will produce 1.56μs long intense electron pulses. The unbundled 5.4A beam of the injector will have a transverse beam size∼1mm. After the buncher the current is reduced to 3.5A and the transverse size varies between a few hundred micrometers and one millimetre along the length of the linac. Calculations indicate that these beam parameters will impose an unbearable thermal load for the intercepting screens currently in use (scintillators and aluminium OTR foils). Graphite and SiC have been investigated as possible alternative materials for the OTR radiators. The possibility of replacing scintillating screens with OTR targets at the low energies of the injector has also been considered. A possible limitation in the use of such high temperature radiators has been identified; ions released from the heated target could focus further the beam with the risk of damaging the target itself and/or blowing up the beam. This would also affect the emittance measurement and would hinder any effort to detect head-tail phenomena. This paper gives the results of the theoretical estimations, and of the beam-based experiments.
Keywords
electron accelerators; electron beam focusing; graphite; linear colliders; particle beam bunching; particle beam injection; silicon compounds; CLIC Test Facility 3; OTR radiators; OTR targets; SiC; aluminium OTR foils; beam blow up; emittance measurement; graphite; high charge CTF3 beam; high temperature radiators; intense electron pulses; intercepting screens; linac; particle beam focusing; scintillating screens; scintillators; thermal load; transverse beam size; unbundled beam; Blades; Current density; Electron beams; Laser beams; Linear particle accelerator; Temperature; Test facilities; Thermal conductivity; Thermal loading; X-ray lasers;
fLanguage
English
Publisher
ieee
Conference_Titel
Particle Accelerator Conference, 2003. PAC 2003. Proceedings of the
ISSN
1063-3928
Print_ISBN
0-7803-7738-9
Type
conf
DOI
10.1109/PAC.2003.1289155
Filename
1289155
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