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Field Measurement of DC Magnets at 3-GeV RCS in J-PARC

机译:J-PARC中3-GeV RCS的直流电磁铁的现场测量

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The J-PARC RCS (Rapid Cycling Synchrotron) is designed to inject the ${rm H}^{-}$ beam from the LINAC, to change their charge from ${rm H}^{-}$ to ${rm H}^{+}$, to accelerate the ${rm H}^{+}$ beam from 400 MeV to 3 GeV, with $8.3times 10^{13}$ protons per pulse at 25 Hz repetition rate, and to extract the ${rm H}^{+}$ beam after the acceleration to the MLF (Material and Life Science Experimental Facility) and the MR (Main Ring). Thus the RCS has the beam circulating ring and three beam transport lines. The RCS ring consists of several magnets, and the DC magnets are installed for beam injection and extraction. The four steering magnets and two septum magnets are installed at injection line in order to adjust the beam injection point. One quadratic magnet, two steering magnet and two septum magnets are installed at dump line for the part of the beam with their charge not changed from ${rm H}^{-}$ to ${rm H}^{+}$ at the charge stripping foil. Two deflecting magnets to kick out the beam without exciting the pulse kicker magnets and three septum magnets are installed at the extraction line.
机译:J-PARC RCS(快速循环同步加速器)旨在注入来自LINAC的$ {rm H} ^ {-} $光束,以将其电荷从$ {rm H} ^ {-} $更改为$ {rm H } ^ {+} $,将$ {rm H} ^ {+} $束光从400 MeV加速到3 GeV,每个脉冲以$ 8.3乘以10 ^ {13} $质子,重复频率为25 Hz,并提取加速至MLF(材料和生命科学实验设施)和MR(主环)后的$ {rm H} ^ {+} $光束。因此,RCS具有光束循环环和三个光束传输线。 RCS环由几个磁体组成,并且安装了DC磁体用于束注入和引出。在注射线处安装了四个转向磁铁和两个隔片磁铁,以调节射束注入点。在翻斗线中,梁的一部分安装了一个二次磁体,两个转向磁体和两个隔片磁体,它们的电荷从$ {rm H} ^ {-} $变为$ {rm H} ^ {+} $电荷剥离箔。在引出管线上安装了两个偏转磁铁,以踢出光束而不激发脉冲跳变磁铁,并且三个隔片磁铁被安装。

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