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RIS citation export for TUPB022: First Measurements of the Next SC CH-cavities for the New Superconducting CW Heavy Ion Linac at GSI

TY - CONF
AU - Basten, M.
AU - Aulenbacher, K.
AU - Barth, W.A.
AU - Busch, M.
AU - Dziuba, F.D.
AU - Gettmann, V.
AU - Heilmann, M.
AU - Kürzeder, T.
AU - Miski-Oglu, M.
AU - Podlech, H.
AU - Schwarz, M.
AU - Yaramyshev, S.
ED - Schaa, Volker RW
ED - He, Yuan
ED - Li, Lu
ED - Zhao, Ning
TI - First Measurements of the Next SC CH-cavities for the New Superconducting CW Heavy Ion Linac at GSI
J2 - Proc. of SRF2017, Lanzhou, China, July 17-21, 2017
C1 - Lanzhou, China
T2 - International Conference on RF Superconductivity
T3 - 18
LA - english
AB - In the future the existing GSI-UNILAC (Universal Linear Accelerator) will primarily be used to provide high power heavy ion beams at a low repetition rate for the FAIR project (Facility for Antiproton and Ion Research). To keep the ambitious Super Heavy Element (SHE) physics program at GSI competitive a superconducting (sc) continuous wave (cw) high intensity heavy ion LINAC is highly desirable to provide ion beams at or above the coulomb barrier [*]. The fundamental linac design composes a high performance ion source, a new low energy beam transport line, the High Charge State Injector (HLI) upgraded for cw, and a matching line (1.4 MeV/u) followed by the new sc-DTL LINAC for acceleration up to 7.3 MeV/u. The construction of the first demonstrator section has been finished in the 3rd quarter of 2016. It comprises the first crossbar-H-mode (CH) cavity with two sc 9.3 T solenoids and has been successfully tested in the end of 2016 [**]. Currently the next two sc 8 gap CH-cavities are under construction at Research Instruments (RI). First intermediate measurements during the fabrication process as well as the latest status of the construction phase will be presented.
PB - JACoW
CP - Geneva, Switzerland
SP - 433
EP - 436
KW - ion
KW - cavity
KW - linac
KW - heavy-ion
KW - status
DA - 2018/01
PY - 2018
SN - 978-3-95450-191-5
DO - 10.18429/JACoW-SRF2017-TUPB022
UR - http://jacow.org/srf2017/papers/tupb022.pdf
ER -