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RIS citation export for TUA2WC01: Transportation and Manipulation of a Laser Plasma Acceleration Beam

AU - Ghaith, A.
AU - Andriyash, I.A.
AU - André, T.
AU - Bielawski, S.
AU - Blache, F.
AU - Bouvet, F.
AU - Briquez, F.
AU - Corde, S.
AU - Couprie, M.-E.
AU - Dietrich, Y.
AU - Duval, J.P.
AU - Evain, C.
AU - Gautier, J.
AU - Herbeaux, C.
AU - Hubert, N.
AU - Kitegi, C.A.
AU - Labat, M.
AU - Lambert, G.
AU - Leclercq, N.
AU - Lestrade, A.
AU - Loulergue, A.
AU - Mahieu, B.
AU - Malka, V.
AU - Marcouillé, O.
AU - Marteau, F.
AU - Oumbarek, D.
AU - Phuoc, K.T.
AU - Rommeluère, P.
AU - Roussel, E.
AU - Sebdaoui, M.
AU - Szwaj, C.
AU - Tavakoli, K.T.
AU - Thaury, C.
AU - Valléau, M.
ED - Chin, Yong Ho
ED - Zhao, Zhentang
ED - Petit-Jean-Genaz, Christine
ED - Schaa, Volker RW
TI - Transportation and Manipulation of a Laser Plasma Acceleration Beam
J2 - Proc. of FLS2018, Shanghai, China, 5-9 March 2018
C1 - Shanghai, China
T2 - ICFA Advanced Beam Dynamics Workshop
T3 - 60
LA - english
AB - The ERC Advanced Grant COXINEL aims at demonstrating free electron laser amplification, at a resonant wavelength of 200 nm, based on a laser plasma acceleration source. To achieve the amplification, a 10 m long dedicated transport line was designed to manipulate the beam qualities. It starts with a triplet of permanent magnet with tunable gradient quadrupoles (QUAPEVA) that handles the highly divergent electron beam, a demixing chicane with a slit to reduce the energy spread per slice, and a set of electromagnetic quadrupoles to provide a chromatic focusing in a 2 m long cryogenic undulator. Electrons of energy 176 MeV were successfully transported throughout the line, where the beam positioning and dispersion were controlled efficiently thanks to a specific beam based alignment method, as well as the energy range by varying the slit width. Observations of undulator radiation for different undulator gaps are reported.
PB - JACoW Publishing
CP - Geneva, Switzerland
SP - 56
EP - 61
KW - ion
KW - electron
KW - laser
KW - undulator
KW - plasma
DA - 2018/06
PY - 2018
SN - 978-3-95450-206-6
DO - 10.18429/JACoW-FLS2018-TUA2WC01
UR - http://jacow.org/fls2018/papers/tua2wc01.pdf
ER -