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TY - CONF AU - Hoffstaetter, G.H. AU - Bazarov, I.V. AU - Ben-Zvi, I. AU - Berg, J.S. AU - Blaskiewicz, M. AU - Brooks, S.J. AU - Brown, K.A. AU - Dobbins, J. AU - Dunham, B.M. AU - Fischer, W. AU - Hao, Y. AU - Mayes, C.E. AU - Meng, W. AU - Minty, M.G. AU - Méot, F. AU - Patterson, J.R. AU - Peggs, S. AU - Ptitsyn, V. AU - Roser, T. AU - Sagan, D. AU - Thieberger, P. AU - Trbojevic, D. AU - Tsoupas, N. ED - Belomestnykh, Sergey ED - Hoffman, Caitlin M. ED - Schaa, Volker RW TI - A FFAG-ERL at Cornell, a BNL/Cornell Collaboration J2 - Proc. of ERL2015, Stony Brook, NY, USA, June 7-12, 2015 C1 - Stony Brook, NY, USA T2 - ICFA Advanced Beam Dynamics Workshop on Energy Recovery Linacs T3 - 56 LA - english AB - Cornell University has prototyped technology essential for any high-brightness electron ERL. This includes a DC gun and an SRF injector Linac, a high-current CW cryomodule, a high-power beam stop, and several diagnostics tools for high-current and high-brightness beams. All these are now available to equip a one-cryomodule ERL, and laboratory space has been cleared out and is radiation shielded to install this ERL at Cornell. BNL has designed a multi-turn ERL for eRHIC where beam is transported 22 times around the RHIC tunnel. The number of transport lines is minimized by using two non-scaling FFAG arcs. A collaboration between BNL and Cornell has been formed to investigate the new NS-FFAG optics of this design, built with permanent magnets, and to commission the unprecedented multi-turn ERL operation. This collaboration plans to install a NS-FFAG return loop and the associated optics-matching sections at Cornell’s one-cryomodule ERL. This FFAG-ERL will be installed in several stages, each of which investigates crutial parts of this new design. PB - JACoW CP - Geneva, Switzerland SP - 4 EP - 3 DA - 2015/09 PY - 2015 SN - 978-3-95450-183-0 DO - 10.18429/JACoW-ERL2015-MOPBTH005 UR - http://jacow.org/ERL2015/papers/mopbth005.pdf ER -