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TY - CONF AU - Burandt, C. AU - Aulenbacher, K. AU - Barth, W.A. AU - Basten, M. AU - Busch, M. AU - Dziuba, F.D. AU - Gettmann, V. AU - Heilmann, M. AU - Kürzeder, T. AU - Lauber, S. AU - List, J. AU - Miski-Oglu, M. AU - Podlech, H. AU - Schnase, A. AU - Schwarz, M. AU - Yaramyshev, S. ED - Michel, Peter ED - Arnold, André ED - Schaa, Volker RW TI - Considerations for Efficient RF Operation for the Advanced cw-Linac Demonstrator at GSI J2 - Proc. of SRF2019, Dresden, Germany, 30 June-05 July 2019 CY - Dresden, Germany T2 - International Conference on RF Superconductivity T3 - 19 LA - english AB - The FAIR@GSI accelerator facility will require the GSI-UNILAC to provide short heavy ion pulses of highest intensity at low repetition rate for injection into the 18 Tm synchrotron SIS18. However, successful physics programs like SHE (Super Heavy Elements) rely on the UNILAC providing for heavy ion beams of high average current and high duty factor. In the next future, a dedicated super-conducting (sc) cw-Linac should therefore deliver cw beams to the experiments associated with those programs. As a first step towards this goal, beam tests with a single sc Cross-bar H-mode (CH) cavity were successfully conducted in 2017/2018. Within the scope of an Advanced Demonstrator project, current activities now aim at a beam test of a full cryomodule with three sc CH cavities and a sc rebuncher. Given a limited amount of rf power available per cavity and the necessity to accelerate different ion species with different mass-to-charge ratios, the loaded quality factor Q of the different resonators has to be chosen very carefully. This contribution discusses the simulations performed in this context. PB - JACoW Publishing CP - Geneva, Switzerland SP - 267 EP - 272 KW - cavity KW - linac KW - cryomodule KW - heavy-ion KW - SRF DA - 2019/08 PY - 2019 SN - "" SN - 978-3-95450-211-0 DO - doi:10.18429/JACoW-SRF2019-MOP081 UR - http://jacow.org/srf2019/papers/mop081.pdf ER -