DocumentCode :
2318513
Title :
BBU and corkscrew growth predictions for the DARHT second axis accelerator
Author :
Chen, Yu-Jiuan ; Fawley, William M.
Author_Institution :
LLNL, Livermore, CA, USA
Volume :
5
fYear :
2001
fDate :
2001
Firstpage :
3490
Abstract :
The second axis accelerator of the Dual Axis Radiographic Hydrodynamic Test (DARHT-II) facility will produce a 2-kA, 20-MeV, 2-μs output electron beam with a design goal of less than 1000 π mm-mrad normalized transverse emittance. In order to meet this goal, both the beam breakup instability (BBU) and transverse "corkscrew" motion (due to chromatic phase advance) must be limited in growth. Using data from recent experimental measurements of the transverse impedance of actual DARHT-II accelerator cells by Briggs et al., we have used the LLNL BREAKUP code to predict BBU and corkscrew growth in DARHT-II. The results suggest that BBU growth should not seriously degrade the final achievable spot size at the x-ray converter, presuming the initial excitation level is of the order 100 microns or smaller. For control of corkscrew growth, a major concern is the number of "tuning" shots needed to utilize effectively the "tuning-V" algorithm. Presuming that the solenoid magnet alignment falls within spec, we believe that possibly as few as 50-100 shots will be necessary to set the dipole corrector magnet currents. We give some specific examples of tune determination for a hypothetical set of alignment errors
Keywords :
X-ray production; accelerator magnets; electromagnets; electron accelerators; electron beams; high energy physics instrumentation computing; linear accelerators; particle beam extraction; particle beam stability; 2 kA; 2 mus; 20 MeV; BBU; BBU growth predictions; DARHT II second axis accelerator; LLNL BREAKUP code; X-ray converter; accelerator cells; beam breakup instability; chromatic phase advance; corkscrew growth predictions; dipole corrector magnet currents; dual axis radiographic hydrodynamic test; electron beam; normalized transverse emittance; solenoid magnet alignment; spot size; transverse impedance; Acceleration; Degradation; Electron beams; Impedance measurement; Laboratories; Lattices; Particle beams; Radiography; Solenoids; Structural beams;
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.2001.988154
Filename :
988154
Link To Document :
بازگشت