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RIS citation export for TUPRO072: Lattice and Component Design for the Front End Test Stand MEBT at RAL

TY - CONF
AU - Aslaninejad, M.
AU - Clarke-Gayther, M.A.
AU - Lawrie, S.R.
AU - Letchford, A.P.
AU - Plostinar, D.C.
AU - Pozimski, J.K.
AU - Savage, P.
ED - Petit-Jean-Genaz, Christine
ED - Arduini, Gianluigi
ED - Michel, Peter
ED - Schaa, Volker RW
TI - Lattice and Component Design for the Front End Test Stand MEBT at RAL
J2 - Proc. of IPAC2014, Dresden, Germany, June 15-20, 2014
C1 - Dresden, Germany
T2 - International Particle Accelerator Conference
T3 - 5
LA - english
AB - The Front End Test Stand (FETS) linear accelerator at Rutherford Appleton laboratory (RAL) will accelerate a 60 mA, 2 ms, 50 pps H⁻ beam to 3MeV. The aim of FETS is to demonstrate perfect chopping using a novel 2 stage (fast / slow) chopper scheme. The beam chopper and associated beam dumps are located in the MEBT. Achieving a low emittance-growth under the influence of strong, non-linear space-charge forces in a lattice which has to accommodate the long chopping elements is challenging. The baseline FETS MEBT design is 4.3 m long and contains 7 quadrupoles, 3 rebunching cavities, a fast and slow chopper deflector and two beam dumps. In particle dynamics simulations using a distribution from an RFQ simulation as input, beam loss for the un-chopped beam is below 1% while the chopping efficiency is >99 % in both choppers. The final MEBT lattice chosen for FETS will be presented together with particle tracking results and design details of the beam line components.
PB - JACoW
CP - Geneva, Switzerland
SP - 1205
EP - 1207
KW - quadrupole
KW - rfq
KW - simulation
KW - lattice
KW - emittance
DA - 2014/07
PY - 2014
SN - 978-3-95450-132-8
DO - 10.18429/JACoW-IPAC2014-TUPRO072
UR - http://jacow.org/ipac2014/papers/tupro072.pdf
ER -