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RIS citation export for WEPTY009: Preservation of Quality Factor of Half Wave Resonator during Quenching in the Presence of Solenoid Field

TY - CONF
AU - Kim, S.H.
AU - Caldwell, D.M.
AU - Conway, Z.A.
AU - Gerbick, S.M.
AU - Kedzie, M.
AU - Kelly, M.P.
AU - MacDonald, S.W.T.
AU - Ostroumov, P.N.
AU - Reid, T.
ED - Henderson, Stuart
ED - Akers, Evelyn
ED - Satogata, Todd
ED - Schaa, Volker R.W.
TI - Preservation of Quality Factor of Half Wave Resonator during Quenching in the Presence of Solenoid Field
J2 - Proc. of IPAC2015, Richmond, VA, USA, May 3-8, 2015
C1 - Richmond, VA, USA
T2 - International Particle Accelerator Conference
T3 - 6
LA - english
AB - The Proton Improvement Plan II at FNAL relies upon a 162.5 MHz superconducting half-wave resonator cryomodule to accelerate H⁻ beams from 2.1 to 10 MeV. This cryomodule contains 8 resonators with 8 superconducting solenoid magnets interspersed between them. X-Y steering coils are integrated with a package of the superconducting solenoid magnets. The center of the solenoids is located within ~50 cm of the high surface magnetic field of the half-wave resonators and in this study we assess whether or not magnetic flux generated by this magnet is trapped into the half-wave resonators niobium surface and increases the RF losses to liquid helium. To test this we assembled a solenoid with a 162.5 MHz half-wave resonator spaced as they will be in the cryomodule. We measured the quality factor of the cavity before and after the cavity quenched as a function of field level in the coils. No measurable change in the quality factor was observed. In this paper, we will present details of the measurements and discuss the magnetic field map.
PB - JACoW
CP - Geneva, Switzerland
SP - 3270
EP - 3272
KW - solenoid
KW - cavity
KW - cryomodule
KW - niobium
KW - dipole
DA - 2015/06
PY - 2015
SN - 978-3-95450-168-7
DO - 10.18429/JACoW-IPAC2015-WEPTY009
UR - http://jacow.org/ipac2015/papers/wepty009.pdf
ER -