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RIS citation export for SUPTEV014: SRF Cavity Tuners for 3.9 GHz Cryomodules for LCLS-II Project

TY  - CONF
AU  - Contreras-Martinez, C.
AU  - Arkan, T.T.
AU  - Khabiboulline, T.N.
AU  - Pischalnikov, Y.M.
AU  - Romanov, G.V.
AU  - Stanek, R.P.
AU  - Yun, J.C.
ED  - Saito, Kenji
ED  - Xu, Ting
ED  - Sakamoto, Naruhiko
ED  - Lesage, Ana
ED  - Schaa, Volker R.W.
TI  - SRF Cavity Tuners for 3.9 GHz Cryomodules for LCLS-II Project
J2  - Proc. of SRF2021, East Lansing, MI, USA, 28 June-02 July 2021
CY  - East Lansing, MI, USA
T2  - International Conference on RF Superconductivity
T3  - 20
LA  - english
AB  - Fermilab conducted testing of three 3.9 GHz cryomodules for the LCLS-II project that will operate in continuous wave mode. A fast/fine tuning component was added to the LCLS-II 3.9 GHz tuner design due to the cavity bandwidth of 130 Hz which consists of two encapsulated piezos. Several cavities faced problems with fast-tuner operations after cooldown to 2 K and tuning the cavities to 3.9 GHz in cryomodule 2. All the piezo actuators were in working conditions but the slow tuner ranges required to stretch some of the cavities to the operational 3.9 GHz frequency were too small to deliver the required preload on the piezos. This behavior can be attributed to several factors: setting the initial warm cavity frequency during production too high, pressure tests of the warm cryomodule could have changed cavity frequency; and the small bending and twisting of the cavity-tuner system during the cooldown and warmup of the cavities. A decision was made to inelastically retune the warm cavities to decrease the unrestrained frequency by 200-300 kHz, this was done via the slow tuner. The results for this retuning method of three 3.9GHz cryomodules will be discussed.
PB  - JACoW Publishing
CP  - Geneva, Switzerland
SP  - 155
EP  - 158
KW  - cavity
KW  - cryomodule
KW  - operation
KW  - SRF
KW  - FEL
DA  - 2022/10
PY  - 2022
SN  - 2673-5504
SN  - 978-3-95450-233-2
DO  - doi:10.18429/JACoW-SRF2021-SUPTEV014
UR  - https://jacow.org/srf2021/papers/suptev014.pdf
ER  -