DocumentCode :
378155
Title :
The NLC L-band bunch compressor
Author :
Li, Zenghai ; Emma, Paul ; Raubenheimer, Tor
Author_Institution :
Stanford Linear Accel. Center, Stanford Univ., CA, USA
Volume :
5
fYear :
2001
fDate :
2001
Firstpage :
3813
Abstract :
The first stage bunch compressor in the NLC injector complex compresses the e+/e- beams from a bunch length of 5 mm rms to 0.5 mm rms at the beam energy of 2 GeV. To obtain this compression ratio, the compressor rf section operates with an rf frequency of 1.4 GHz and a voltage of about 140 MV while a magnetic wiggler is used to generate an R56 = 0-5 m. The bunch compressor is designed to operate with a beam from the damping ring that has a bunch spacing slew of 20 ps across the bunch train due to the transient loading in the damping rings. The compressor RF section is required to produce a specific energy profile along the bunch train so that the bunch spacing can be corrected in the compressor bending section. Further, the 1-amp beam heavily loads the compressor linac and beam loading compensation is essential to prevent a phase variation along the bunch train in the downstream linacs. In this paper, we will present simulation results of the beam loading compensation using a AT scheme assuming various initial bunch spacing arrangements. We will study the impact of the different compressor energy profiles on the beam energy, energy spread, and bunch length at the IP
Keywords :
accelerator RF systems; accelerator magnets; electromagnets; electron accelerators; electron beams; linear accelerators; particle beam bunching; particle beam injection; wigglers; 0 to 5 m; 1 A; 1.4 GHz; 140 MV; 2 GeV; 20 ps; AT scheme; IP; NLC L-band bunch compressor; NLC injector complex; beam energy; beam loading compensation; bunch length; bunch spacing arrangements; bunch spacing slew; bunch train; compression ratio; compressor bending section; compressor radiofrequency section; damping ring; electron beams; energy profile; energy spread; linear accelerator; magnetic wiggler; phase variation; positron beams; Acceleration; Damping; L-band; Linear particle accelerator; Niobium; Particle beams; Radio frequency; US Department of Energy; Undulators; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Particle Accelerator Conference, 2001. PAC 2001. Proceedings of the 2001
Conference_Location :
Chicago, IL
Print_ISBN :
0-7803-7191-7
Type :
conf
DOI :
10.1109/PAC.2001.988262
Filename :
988262
Link To Document :
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