费米实验室助推器同步加速器多元件校正磁体的设计与制造

D. Harding, J. DiMarco, C. Drennan, V. Kashikhin, S. Kotelnikov, J. Lackey, A. Makarov, A. Makulski, R. Nehring, D. Orris, E. Prebys, P. Schlabach, G. Velev, D. Walbridge
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引用次数: 6

摘要

为了更好地控制费米实验室助推器同步加速器中的光束位置、调谐和色度,设计了一个由六个校正元件组成的新套件,包括偶极子、四极子和六极子磁铁的正向和斜向。这些装置正在建造中,计划在48个地点安装。元素的密度和快速的转换速度提出了特殊的挑战。介绍了磁体的结构以及磁场的直流测量。
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Design and fabrication of a multi-element corrector magnet for the Fermilab Booster synchrotron
To better control the beam position, tune, and chromaticity in the Fermilab Booster synchrotron, a new package of six corrector elements has been designed, incorporating both normal and skew orientations of dipole, quadrupole, and sextupole magnets. The devices are under construction and installation at 48 locations is planned. The density of elements and the rapid slew rate have posed special challenges. The magnet construction is presented along with DC measurements of the magnetic field.
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