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RIS citation export for MOPAB391: Conduction Cooling Methods for Nb₃Sn SRF Cavities and Cryomodules

TY  - CONF
AU  - Stilin, N.A.
AU  - Holic, A.T.
AU  - Liepe, M.
AU  - Porter, R.D.
AU  - Sears, J.
AU  - Sun, Z.
ED  - Liu, Lin
ED  - Byrd, John M.
ED  - Neuenschwander, Regis T.
ED  - Picoreti, Renan
ED  - Schaa, Volker R. W.
TI  - Conduction Cooling Methods for Nb₃Sn SRF Cavities and Cryomodules
J2  - Proc. of IPAC2021, Campinas, SP, Brazil, 24-28 May 2021
CY  - Campinas, SP, Brazil
T2  - International Particle Accelerator Conference
T3  - 12
LA  - english
AB  - Rapid progress in the performance of Nb₃Sn SRF cavities during the last few years has made Nb₃Sn an energy efficient alternative to traditional Nb cavities, thereby initiating a fundamental shift in SRF technology. These Nb₃Sn cavities can operate at significantly higher temperatures than Nb cavities while simultaneously requiring less cooling power. This critical property enables the use of new, robust, turn-key style cryogenic cooling schemes based on conduction cooling with commercial cryocoolers. Cornell University has developed and tested a 2.6 GHz Nb₃Sn cavity assembly which utilizes such cooling methods. These tests have demonstrated stable RF operation at 10 MV/m and the measured thermal dynamics match what is found in numerical simulations.
PB  - JACoW Publishing
CP  - Geneva, Switzerland
SP  - 1192
EP  - 1195
KW  - cavity
KW  - SRF
KW  - controls
KW  - accelerating-gradient
KW  - simulation
DA  - 2021/08
PY  - 2021
SN  - 2673-5490
SN  - 978-3-95450-214-1
DO  - doi:10.18429/JACoW-IPAC2021-MOPAB391
UR  - https://jacow.org/ipac2021/papers/mopab391.pdf
ER  -