Development of Superconducting Combined Function Magnets for the Proton Transport Line for the J-PARC Neutrino Experiment

Development of Superconducting Combined Function Magnets for the Proton Transport Line for the J-PARC Neutrino Experiment
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J-PARC 中微子实验质子传输线超导组合功能磁体的开发

DOI:
10.1109/pac.2005.1590479
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发表时间:
2005
期刊:
Proceedings of the 2005 Particle Accelerator Conference
影响因子:
--
通讯作者:
T. Orikasa
T. Orikasa
中科院分区:
--
文献类型:
--
作者:
T. Nakamoto;Y. Ajima;Y. Fujii;N. Higashi;A. Ichikawa;N. Kimura;T. Kobayashi;Y. Makida;T. Ogitsu;H. Ohhata;T. Okamura;K. Sasaki;Minoru Takasaki;Kazuhide Tanaka;A. Terashima;T. Tomaru;A. Yamamoto;M. Anerella;G. Ganetis;R. Gupta;M. Harrison;A. Jain;J. Muratore;B. Parker;P. Wanderer;T. Obana;T. Fujii;E. Hashiguchi;T. Kanahara;T. Orikasa

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超导组合功能磁体将用于J-PARC中微子实验的50 GeV,750 kW质子束线。磁体设计为在7345 A的标称电流下,在173.4 mm的线圈孔径中提供2.6 T的偶极场和19 T/m的四极场。两个全尺寸的原型磁铁,以验证磁铁性能的成功开发。第一台样机在励磁试验过程中没有经历训练失超,证实了良好的现场质量。
Superconducting combined function magnets will be utilized for the 50 GeV, 750 kW proton beam line for the J-PARC neutrino experiment. The magnet is designed to provide a dipole field of 2.6 T combined with a quadrupole field of 19 T/m in a coil aperture of 173.4 mm at a nominal current of 7345 A. Two full-scale prototype magnets to verify the magnet performance were successfully developed. The first prototype experienced no training quench during the excitation test and good field quality was confirmed.
用于 J-PARC 中微子实验的 50 GeV 质子束线超导磁体系统
DOI: --
发表时间: 2004
期刊: IEEE Transaction on Applied Superconductivity 14巻
影响因子: --
作者:
K.Matsubayashi;N.K.Sato et al.;T.Ogitsu et al.
通讯作者: T.Ogitsu et al.