The H₂020 CompactLight Project (www. CompactLight.eu) aims at designing the next generation of compact X-rays Free-Electron Lasers, relying on very high gradient accelerating structures (X-band, 12 GHz), the most advanced concepts for bright electron photo injectors, and innovative compact short-period undulators. Compared to existing facilities, the proposed facility will benefit from a lower electron beam energy, due to the enhanced undulators performance, and will be significantly more compact, with a smaller footprint, as a consequence of the lower energy and the high-gradient X-band structures. In addition, the whole infrastructure will also have a lower electrical power demand as well as lower construction and running costs.

The compactLight design study project / D'Auria, G., Aicheler, M., Aksoy, A., Alesini, D., Apsimon, R., Arnesano, J.M., Bellaveglia, M., Bernhard, A., Bosco, F., Buonomo, B., Burt, G., Calvi, M., Cardelli, F., Mauricio Castaneda Cortes, H., Castilla, A., Clarke, J., Croia, M., Cross, A., Dattoli, G., Di Mitri, S., et al.. - (2019), pp. 1-4. (10th International Particle Accelerator Conference (IPAC'19) Melbourne, Australia ) [10.18429/jacow-ipac2019-tuprb032].

The compactLight design study project

David Alesini;Jordan Matias Arnesano;Marco Bellaveglia;Fabio Bosco;Bruno Buonomo;Fabio Cardelli;Michele Croia;Giuseppe Dattoli;Marco Diomede;Massimo Ferrario;Luca Ficcadenti;Anna Giribono;Andrea Mostacci;Luigi Palumbo;Luca Piersanti;Bruno Spataro;Cristina Vaccarezza;
2019

Abstract

The H₂020 CompactLight Project (www. CompactLight.eu) aims at designing the next generation of compact X-rays Free-Electron Lasers, relying on very high gradient accelerating structures (X-band, 12 GHz), the most advanced concepts for bright electron photo injectors, and innovative compact short-period undulators. Compared to existing facilities, the proposed facility will benefit from a lower electron beam energy, due to the enhanced undulators performance, and will be significantly more compact, with a smaller footprint, as a consequence of the lower energy and the high-gradient X-band structures. In addition, the whole infrastructure will also have a lower electrical power demand as well as lower construction and running costs.
2019
10th International Particle Accelerator Conference (IPAC'19)
FEL; linac; electron; undulator; brightness
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
The compactLight design study project / D'Auria, G., Aicheler, M., Aksoy, A., Alesini, D., Apsimon, R., Arnesano, J.M., Bellaveglia, M., Bernhard, A., Bosco, F., Buonomo, B., Burt, G., Calvi, M., Cardelli, F., Mauricio Castaneda Cortes, H., Castilla, A., Clarke, J., Croia, M., Cross, A., Dattoli, G., Di Mitri, S., et al.. - (2019), pp. 1-4. (10th International Particle Accelerator Conference (IPAC'19) Melbourne, Australia ) [10.18429/jacow-ipac2019-tuprb032].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1338525
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