Journal of Synchrotron Radiation · 2019 · 27 citations · 18 references
Fel Intensity JitterAccelerator TechnologyFree Electron LaserEngineeringTransverse Position JitterFel PerformanceApplied PhysicsAccelerator PhysicX-ray Free-electron LaserSynchrotron RadiationMicroelectronicsParticle AcceleratorBunch Compression
PAL-XFEL utilizes a three-chicane bunch compression (3-BC) scheme (the very first of its kind in operation) for free-electron laser (FEL) operation. The addition of a third bunch compressor allows for more effective mitigation of coherent synchrotron radiation during bunch compression and an increased flexibility of system configuration. Start-to-end simulations of the effects of radiofrequency jitter on the electron beam performance show that using the 3-BC scheme leads to better performance compared with the two-chicane bunch compression scheme. Together with the high performance of the linac radiofrequency system, it enables reliable operation of PAL-XFEL with unprecedented stability in terms of arrival timing, pointing and intensity; an arrival timing jitter of better than 15 fs, a transverse position jitter of smaller than 10% of the photon beam size, and an FEL intensity jitter of smaller than 5% are consistently achieved.
18
First lasing and operation of an ångstrom-wavelength free-electron laser
P. Emma, R. Akre, John Arthur et al. · Nature Photonics · 2010 · 3K citations
A compact X-ray free-electron laser emitting in the sub-ångström region
Tetsuya Ishikawa, H. Aoyagi, T. Asaka et al. · Nature Photonics · 2012 · 1.8K citations
Hard X-ray free-electron laser with femtosecond-scale timing jitter
Heung-Sik Kang, Chang‐Ki Min, Hoon Heo et al. · Nature Photonics · 2017 · 525 citations
SwissFEL: The Swiss X-ray Free Electron Laser
Christopher J. Milne, Thomas Schietinger, M. Aiba et al. · Applied Sciences · 2017 · 347 citations · Full text