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남인혁

Nam, Inhyuk
Extreme Lasers and Exotic Plasmas Lab
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FEL performance achieved at PAL-XFEL using a three-chicane bunch compression scheme

Author(s)
Kang, Heung-SikYang, HaeryongKim, GyujinHeo, HoonNam, InhyukMin, Chang-KiKim, ChangbumBaek, Soung YoulChoi, Hyo-JinMun, GeonyeongPark, Byoung RyulSuh, Young JinShin, Dong CheolHu, JinyulHong, JuhoJung, SeonghoonKim, Sang-HeeKim, KwangHoonNa, DonghyunPark, Soung SooPark, Yong JungHan, Jang-HuiJung, Young GyuJeong, Seong HunKim, Min JaeLee, Hong GiLee, SangbongLee, Woul-WooOh, BonggiSuh, Hyung SuckPark, Ki-HyeonLee, Heung-SooKhan, D. Z.Raubenheimer, T. O.Wu, Juhao
Issued Date
2019-07
DOI
10.1107/S1600577519005861
URI
https://scholarworks.unist.ac.kr/handle/201301/86802
Citation
JOURNAL OF SYNCHROTRON RADIATION, v.26, pp.1127 - 1138
Abstract
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 15fs, 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.
Publisher
INT UNION CRYSTALLOGRAPHY
ISSN
0909-0495
Keyword (Author)
bunch compressioncoherent synchrotron radiationstabilityhard X-raysarrival timing jitterfree-electron laser
Keyword
FREE-ELECTRON LASERBEAMINSTABILITY

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