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TY - CONF AU - Latina, A. AU - Aicheler, M. AU - Aksoy, A.A. AU - Bernhard, A. AU - Clarke, J.A. AU - Cross, A.W. AU - D'Auria, G. AU - Dowd, R.T. AU - Esperante Pereira, D. AU - Fang, W. AU - Faus-Golfe, A. AU - Ferrario, M. AU - Gazis, E.N. AU - Geometrante, R. AU - Jacewicz, M. AU - Mostacci, A. AU - Nguyen, F. AU - Priem, J.M.A. AU - Pérez, F. AU - Schmidt, T. AU - Schulte, D. AU - Stapnes, S. AU - Wuensch, W. ED - Chin, Yong Ho ED - Zhao, Zhentang ED - Petit-Jean-Genaz, Christine ED - Schaa, Volker RW TI - CompactLight Design Study J2 - Proc. of FLS2018, Shanghai, China, 5-9 March 2018 C1 - Shanghai, China T2 - ICFA Advanced Beam Dynamics Workshop T3 - 60 LA - english AB - H2020 CompactLight Project aims at designing the next generation of compact hard X-Rays Free-Electron Lasers, relying on very high accelerating gradients and on novel undulator concepts. CompactLight intends to design a compact Hard X-ray FEL facility based on very high-gradient acceleration in the X band of frequencies, on a very bright photo injector, and on short-period/superconductive undulators to enable smaller electron beam energy. If compared to existing facilities, the proposed facility will benefit from a lower electron beam energy, due to the enhanced undulators performance, be significantly more compact, as a consequence both of the lower energy and of the high-gradient X-band structures, have lower electrical power demand and a smaller footprint. CompactLight is a consortium of 24 institutes (21 European + 3 extra Europeans), gathering the world-leading experts both in the domains of X-band acceleration and undulator design. PB - JACoW Publishing CP - Geneva, Switzerland SP - 85 EP - 88 KW - ion KW - undulator KW - electron KW - FEL KW - gun DA - 2018/06 PY - 2018 SN - 978-3-95450-206-6 DO - 10.18429/JACoW-FLS2018-WEP1WC02 UR - http://jacow.org/fls2018/papers/wep1wc02.pdf ER -