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BiBTeX citation export for WE4P13: Physics Design and Beam Dynamics Optimization of the SHINE Accelerator

@inproceedings{gu:fls2023-we4p13,
  author       = {D. Gu and Z. Wang and M. Zhang},
  title        = {{Physics Design and Beam Dynamics Optimization of  the SHINE Accelerator}},
% booktitle    = {Proc. FLS'23},
  booktitle    = {Proc. 67th ICFA Adv. Beam Dyn. Workshop Future Light Sources (FLS'23)},
  eventdate    = {2023-08-27/2023-09-01},
  pages        = {174--176},
  paper        = {WE4P13},
  language     = {english},
  keywords     = {linac, electron, FEL, emittance, cryomodule},
  venue        = {Luzern, Switzerland},
  series       = {ICFA Advanced Beam Dynamics Workshop},
  number       = {67},
  publisher    = {JACoW Publishing, Geneva, Switzerland},
  month        = {01},
  year         = {2024},
  issn         = {2673-7035},
  isbn         = {978-3-95450-224-0},
  doi          = {10.18429/JACoW-FLS2023-WE4P13},
  url          = {http://jacow.org/fls2023/papers/we4p13.pdf},
  abstract     = {{Shanghai HIgh Repetition Rate X-ray Free Electron Laser and Extreme Light Facility (SHINE) is a hard X-ray FEL facility which is driven by a 1.3 km supercon-ducting Linac, aims to provide high repetition rate pulses up to 1 MHz . In this study, we present the physics design of the SHINE accelerator and considerations of beam dynamics optimizations. Start-to-end simulation results show that, a high brightness electron beam with over 1500 A quasi-flat-top current can be attained which fully meet the requirements of FEL lines. Furthermore, design of the bypass line is also discussed.}},
}