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RIS citation export for WEPRI061: Cornell's Main Linac Cryomodule for the Energy Recovery Linac Project

TY - CONF
AU - Eichhorn, R.G.
AU - Bullock, B.
AU - Conway, J.V.
AU - Elmore, B.
AU - Furuta, F.
AU - He, Y.
AU - Hoffstaetter, G.H.
AU - Kaufman, J.J.
AU - Liepe, M.
AU - O'Connel, T.I.
AU - Quigley, P.
AU - Sabol, D.M.
AU - Sears, J.
AU - Smith, E.N.
AU - Veshcherevich, V.
ED - Petit-Jean-Genaz, Christine
ED - Arduini, Gianluigi
ED - Michel, Peter
ED - Schaa, Volker RW
TI - Cornell's Main Linac Cryomodule for the Energy Recovery Linac Project
J2 - Proc. of IPAC2014, Dresden, Germany, June 15-20, 2014
C1 - Dresden, Germany
T2 - International Particle Accelerator Conference
T3 - 5
LA - english
AB - Cornell University has been designing and building superconducting accelerators for various applications for more than 50 years. Currently, an energy-recovery linac (ERL) based synchrotron-light facility is proposed making use of the existing CESR facility. As part of the phase 1 R&D program funded by the NSF, critical challenges in the design were addressed, one of them being a full linac cryo-module. It houses 6 superconducting cavities- operated at 1.8 K in continuous wave (CW) mode - with individual HOM absorbers and one magnet/ BPM section. Pushing the limits, a high quality factor of the cavities (2•1010) and high beam currents (100 mA accelerated plus 100 mA decelerated) are targeted. We will present the status of the main linac cryomodule (MLC) fabrication and the findings on the cavity performance and component testing.
PB - JACoW
CP - Geneva, Switzerland
SP - 2624
EP - 2626
KW - linac
KW - cavity
KW - cryomodule
KW - vacuum
KW - alignment
DA - 2014/07
PY - 2014
SN - 978-3-95450-132-8
DO - 10.18429/JACoW-IPAC2014-WEPRI061
UR - http://jacow.org/ipac2014/papers/wepri061.pdf
ER -