DocumentCode
1069701
Title
Test Results of Superconducting Combined Function Magnets for the J-PARC Neutrino Beam Line
Author
Sasaki, Ken-Ichi ; Nakamoto, Tatsushi ; Kimura, Nobuhiro ; Tomaru, Takayuki ; Ogitsu, Toru ; Higashi, Norio ; Ajima, Yasuo ; Araoka, Osamu ; Iida, Masahisa ; Kasami, Katsuyu ; Makida, Yasuhiro ; Ohhata, Hirokatsu ; Okamura, Takahiro ; Sugawara, Shigekatsu
Author_Institution
High Energy Accel. Res. Organ. (KEK), Tsukuba
Volume
17
Issue
2
fYear
2007
fDate
6/1/2007 12:00:00 AM
Firstpage
1083
Lastpage
1086
Abstract
Superconducting combined function magnets for the J-PARC (Japan Proton Accelerator Research Complex) neutrino experiment have been successfully developed at High Energy Accelerator Research Organization, KEK. The first prototype magnet reassembled for the quench protection studies, and the cold test result indicated that the eight quench protection heaters are effective for the safe protection of the magnet. Three production magnets have been fabricated and tested at 4.5 K, 1 atm, in a vertical cryostat, and the excellent excitation and quench performances are observed. In the field measurement during cold tests, all the magnets indicated the field qualities good enough to fulfill the specification. The field measurement at room temperature has been also performed with the three production magnets for checking the dipole field component. The results are consistent with the computation.
Keywords
cryostats; neutrino oscillations; proton accelerators; superconducting magnets; High Energy Accelerator Research Organization; Japan Proton Accelerator Research Complex; dipole field component; magnet safe protection; neutrino beam line; quench protection; superconducting combined function magnets; vertical cryostat; Accelerator magnets; Magnetic field measurement; Neutrino sources; Performance evaluation; Production; Protection; Proton accelerators; Superconducting magnets; Temperature measurement; Testing; J-PARC; magnetic field measurement; neutrino; quench protection heater; superconducting combined function magnet;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2007.898986
Filename
4277692
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