Undulators and light production with the XLS-CompactLight design study

Nguyen, F. and Carpanese, M. and Petralia, A. and Bernhard, A. and Arnsberg, J. and Fatehi, S. and Gethmann, J. and Grohmann, S. and Krasch, B. and Schmidt, T. and Calvi, M. and Danner, S. and Zhang, K. and Thompson, N. and Clarke, J. A. and Castañeda Cortés, H. M. and Dunning, D. J. and Hinton, A. and Shepherd, B. and Geometrante, R. and Kokole, M. and Milharcic, T. and Pockar, J. and Aksoy, A. and Nergiz, Z. and Marcos, J. and Perez, F. and Cross, A. W. and Zhang, L. and Zhu, D. and Richter, S. C. and Latina, A. and Cianchi, A. and Goryashko, V. and D’Auria, G. and Di Mitri, S. and Rochow, R. (2022) Undulators and light production with the XLS-CompactLight design study. Moscow University Physics Bulletin, 77 (2). pp. 241-244. ISSN 1934-8460 (https://doi.org/10.3103/S0027134922020710)

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Abstract

Abstract: Free electron laser (FEL) facilities provide broadly tunable and highly coherent photon beams. These machines still have an unexplored potential and development. The XLS-CompactLight design aims at a flexible hard plus soft X-ray FEL facility exploiting the latest concepts in terms of short period magnetic undulators, paving the road towards more compact photon sources.