With the large number of superconducting radiofrequency (RF) cryomodules to be tested for the former LEP and the present LHC accelerator a RF test facility was erected early in the 1990’s in the largest cryogenic test facility at CERN located at Point 18. This facility consisted of four vertical test stands for single cavities and originally one and then two horizontal test benches for RF cryomodules operating at 4.5 K in saturated helium. CERN is presently working on the upgrade of its accelerator infrastructure, which requires new superconducting cavities operating below 2 K in saturated superfluid helium. Consequently, the RF test facility has been renewed in order to allow efficient cavity and cryomodule tests in superfluid helium and to improve its thermal performances. The new RF test facility is described and its performances are presented.
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29 January 2014
ADVANCES IN CRYOGENIC ENGINEERING: Transactions of the Cryogenic Engineering Conference - CEC
17–21 June 2013
Anchorage, Alaska, USA
Research Article|
January 29 2014
Upgrade of the cryogenic CERN RF test facility
O. Pirotte;
O. Pirotte
CERN - European Organization for Nuclear Research, CH-1211 Geneva 23,
Switzerland
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V. Benda;
V. Benda
CERN - European Organization for Nuclear Research, CH-1211 Geneva 23,
Switzerland
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O. Brunner;
O. Brunner
CERN - European Organization for Nuclear Research, CH-1211 Geneva 23,
Switzerland
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V. Inglese;
V. Inglese
CERN - European Organization for Nuclear Research, CH-1211 Geneva 23,
Switzerland
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T. Koettig;
T. Koettig
ESS - European Spallation Source, Box 176, 221 00 Lund,
Sweden
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P. Maesen;
P. Maesen
CERN - European Organization for Nuclear Research, CH-1211 Geneva 23,
Switzerland
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B. Vullierme
B. Vullierme
CERN - European Organization for Nuclear Research, CH-1211 Geneva 23,
Switzerland
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AIP Conf. Proc. 1573, 187–194 (2014)
Citation
O. Pirotte, V. Benda, O. Brunner, V. Inglese, T. Koettig, P. Maesen, B. Vullierme; Upgrade of the cryogenic CERN RF test facility. AIP Conf. Proc. 29 January 2014; 1573 (1): 187–194. https://doi.org/10.1063/1.4860700
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