DocumentCode :
1343021
Title :
Beam Dynamics in a 10-GeV Linear Accelerator for the X-Ray Free Electron Laser at PAL
Author :
Kim, Eun-San ; Yoon, Moohyun
Author_Institution :
Dept. of Phys., Kyungpook Nat. Univ., Daegu, South Korea
Volume :
56
Issue :
6
fYear :
2009
Firstpage :
3597
Lastpage :
3606
Abstract :
We investigated beam dynamics in a 10-GeV linear accelerator for SASE (Self-Amplified Spontaneous Emission) Free-Electron Laser (FEL) at PAL. The linac is designed to provide the optimal beams to generate radiation of the wavelength of 1-¿ in the undulator. An optimum choice of beam parameters is performed to reduce the correlated energy spread after final beam compression and to make accelerator system insensitive to rf jitters. The two-stage bunch compressors are designed to reduce the effects of coherent synchrotron radiation and thus the transverse emittance is not significantly increased. The bunch compressors are also designed such that the effects of nonlinearities due to wakefields, rf curvature and second order momentum compaction become as small as possible in the linear accelerator. With a careful choice of beam and accelerator parameters, the bunch compression process can be made more linear, which minimizes bunch length that can be achieved and helps to reduce high peak current spikes in the beam distributions, which may deteriorate the SASE performance. The tracking simulations in the linear accelerator include longitudinal and transverse wakefields, and the effects of errors such as rf gun timing, rf phase and rf voltage. The simulations also include the X-band rf section and its wakefield. In result, through these design studies, we could get beam parameters and accelerator parameters to be able to provide the radiation power of 6 GW in the wavelength of 1-¿ in a 94-m-long undulator. Results on low-charge case of 0.2 nC and the microbunching instability are also shown. It is shown that the designed linac with a tuneable lattice shows satisfactory performances for a 10-GeV X-ray FEL facility.
Keywords :
X-ray lasers; accelerator RF systems; electron beams; free electron lasers; jitter; particle beam bunching; particle beam dynamics; particle beam stability; superradiance; wakefield accelerators; wigglers; PAL; SASE-FEL; X-ray free electron laser; accelerator system insensitivity; beam dynamics; beam parameters; coherent synchrotron radiation; correlated energy; electron beam; electron volt energy 10 GeV; linear accelerator; microbunching instability; radiation power generation; rf gun timing; rf jitters; rf phase; rf voltage; second order momentum compaction; self-amplified spontaneous emission; tracking simulations; two-stage bunch compressor; undulator; wakefields; Compressors; Electron beams; Free electron lasers; Laser beams; Linear accelerators; Linear particle accelerator; Particle beams; Spontaneous emission; Undulators; X-ray lasers; Bunch compressor; SASE-FEL; momentum compaction factor; wake field;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2009.2031321
Filename :
5341452
Link To Document :
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