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RIS citation export for TUOCB3: CBETA - Cornell University Brookhaven National Laboratory Electron Energy Recovery Test Accelerator

TY - CONF
AU - Trbojevic, D.
AU - Banerjee, N.
AU - Barley, J.
AU - Bartnik, A.C.
AU - Bazarov, I.V.
AU - Bellavia, S.
AU - Berg, J.S.
AU - Blaskiewicz, M.
AU - Brooks, S.J.
AU - Brown, K.A.
AU - Burke, D.C.
AU - Crittenden, J.A.
AU - Cultrera, L.
AU - Dobbins, J.
AU - Douglas, D.
AU - Dunham, B.M.
AU - Eichhorn, R.G.
AU - Fischer, W.
AU - Full, S.J.
AU - Furuta, F.
AU - Gallagher, R.E.
AU - Ge, M.
AU - Heltsley, B.K.
AU - Hoffstaetter, G.H.
AU - Jusic, D.
AU - Kaplan, R.P.K.
AU - Karl, F.X.
AU - Kostroun, V.O.
AU - Li, Y.
AU - Liepe, M.
AU - Liu, C.
AU - Lou, W.
AU - Mahler, G.J.
AU - Mayes, C.E.
AU - Michnoff, R.J.
AU - Minty, M.G.
AU - Méot, F.
AU - Patterson, J.R.
AU - Peggs, S.
AU - Ptitsyn, V.
AU - Quigley, P.
AU - Roser, T.
AU - Sabol, D.M.
AU - Sagan, D.
AU - Sears, J.
AU - Shore, C.H.
AU - Smith, E.N.
AU - Smolenski, K.W.
AU - Thieberger, P.
AU - Tsoupas, N.
AU - Tuozzolo, J.E.
AU - Veshcherevich, V.
AU - Widger, D.
AU - Willeke, F.J.
AU - Witte, H.
ED - Schaa, Volker RW
ED - Arduini, Gianluigi
ED - Pranke, Juliana
ED - Seidel, Mike
ED - Lindroos, Mats
TI - CBETA - Cornell University Brookhaven National Laboratory Electron Energy Recovery Test Accelerator
J2 - Proc. of IPAC2017, Copenhagen, Denmark, 14–19 May, 2017
C1 - Copenhagen, Denmark
T2 - International Particle Accelerator Conference
T3 - 8
LA - english
AB - Cornell's Lab of Accelerator-based Sciences and Education (CLASSE) and the Collider Accelerator Department (BNL-CAD) are developing the first SRF multi-turn energy recovery linac with Non-Scaling Fixed Field Alternating Gradient (NS-FFAG) racetrack. The existing injector and superconducting linac at Cornell University are installed together with a single NS-FFAG arcs and straight section at the opposite side of the the linac to form an Electron Energy Recovery (ERL) system. Electron beam from the 6 MeV injector is injected into the 36 MeV superconducting linac, and accelerated by four successive passes: from 42 MeV up to 150 MeV using the same NS-FFAG structure made of permanent magnets. After the maximum energy of 150 MeV is reached, the electron beam is brought back to the linac with opposite Radio Frequency (RF) phase. Energy is recovered and reduced to the initial value of 6 MeV with 4 additional passes. There are many novelties: a single NS-FFAG structure, made of permanent magnets, brings electrons with four different energies back to the linac. A new adiabatic NS-FFAG arc-to-straight section merges 4 separated orbits into a single orbit in the straight section.
PB - JACoW
CP - Geneva, Switzerland
SP - 1285
EP - 1289
KW - electron
KW - linac
KW - permanent-magnet
KW - acceleration
KW - gun
DA - 2017/05
PY - 2017
SN - 978-3-95450-182-3
DO - 10.18429/JACoW-IPAC2017-TUOCB3
UR - http://jacow.org/ipac2017/papers/tuocb3.pdf
ER -