Mechanical Engineering Solutions for COXINEL Project

Keihan Tavakoli,Thomas André,Igor Andriyash, Christian Basset, C. Benabderrahmane, P. Berteaud, Sébastien Bobault, Sylvain Bonnin,François Bart, F. Briquez, L. Chapuis,Marie-Emmanuelle Couprie,D. Dennetière, Yannick Dietrich, Jean-Pierre Duval, Moussa El Ajjouri, Tarik El Ajjouri,Julien Gautier, Christian Herbeaux,Nicolas Hubert,M. Khojoyan, M. Labat,Guillaume Lambert, N. Leclercq, Alain Lestrade, Alexandre Loulergue,Victor Malka, Olivier Marcouillé,F. Marteau,Arnaud Mary, Patrick N'gotta, F. Polack, Patrick Rommeluère,A. Rousse,Eléonore Roussel, Mourad Sebdaoui,K. Ta Phuoc,C. Thaury, Falilou Thiam,Mathieu Valléau, J. Vétéran, Daniel Zerbib, Carlos de Olivera

HAL (Le Centre pour la Communication Scientifique Directe)(2016)

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摘要
COXINEL (COherent Xray source INferred from Electrons accelerated by Laser) is a European Research Council (ERC) advance grant aims at demonstrating Free Electron Laser amplification at 200 nm with 180 MeV electrons generated by laser plasma acceleration. A special electron beam transfer line with adequate diagnostics has been designed for this project. Strong-focusing variable-field permanent magnet quadrupoles, energy de-mixing chicane and a set of conventional quadrupoles condition the electron beam before its entrance to an In-Vacuum U20 undulator. This presentation describes some of the features incorporated into the design of the magnets, girders, vacuum vessels and diagnostic equipment for this experimental machine. Progress on the equipment preparation and installation is presented as well.
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mechanical engineering
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