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TY - CONF AU - Fagotti, E. AU - Akagi, T. AU - Antoniazzi, L. AU - Bellan, L. AU - Cara, P. AU - Comunian, M. AU - Dzitko, H. AU - Grespan, F. AU - Heidinger, R. AU - Kondo, K. AU - Marqueta, A. AU - Montis, M. AU - Moya, I.M. AU - Palmieri, A. AU - Pisent, A. AU - Podadera, I. AU - Sakamoto, K. AU - Scantamburlo, F. AU - Shinya, T. AU - Sugimoto, M. ED - Schaa, Volker RW ED - Pei, Guoxi ED - Chin, Yong Ho ED - Fu, Shinian ED - Zhao, Ning TI - IFMIF/EVEDA RFQ Preliminary Beam Characterization J2 - Proc. of LINAC2018, Beijing, China, 16-21 September 2018 CY - Beijing, China T2 - Linear Accelerator Conference T3 - 29 LA - english AB - The IFMIF/EVEDA RFQ is the longest and powerful operated. Therefore, it requires a careful characterization from several aspects: beam dynamics, RF, mechanics, installation and commissioning. Due to the very large power handling, the preliminary beam operation was decided to be performed with a low proton beam current at one half of the voltage needed for deuteron accelera-tion, i.e. from 8 mA to 30 mA at 2.5 MeV in pulsed mode, with respect to the nominal 130-mA deuteron beam at 5 MeV in CW. In this framework, it will be presented the characterization of the RFQ in terms of simulation and measurements. PB - JACoW Publishing CP - Geneva, Switzerland SP - 834 EP - 837 KW - rfq KW - MMI KW - proton KW - operation KW - simulation DA - 2019/01 PY - 2019 SN - 2226-0366 SN - 978-3-95450-194-6 DO - DOI: 10.18429/JACoW-LINAC2018-THPO062 UR - http://jacow.org/linac2018/papers/thpo062.pdf ER -