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The optimised sc dipole of SIS 100 for series production

机译:SIS 100用于系列生产的优化SC偶极子

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摘要

At the international facility for antiproton and ion research (FAIR) in Darmstadt, Germany, an accelerator complex is developed for fundamental research in various fields of modern physics. In the SIS100 heavy-ion synchrotron, the main accelerator of FAIR, superconducting dipoles are used to bend the particle beam. The fast ramped dipoles are 3 m long super-ferric curved magnets operated at 4.5 K. The demands on field homogeneity required for sufficient beam stability are given by AB/B < ±6 · 10~(-4) . An intense measurement program of the First of Series (FoS) dipole showed excellent quench behavior and lower than expected AC losses yielding the main load on the SIS100 cryoplant. The FoS is capable to provide a field strength of 1.9 T. However, with sophisticated measurement systems slight distortions of the dipole field were detected. Those effects were tracked down to mechanical inaccuracies of the yoke proven by appropriate geometrical measurements and simulations. After a survey on alternative fabrication techniques a magnet with a new yoke was built with substantial changes to improve the mechanical accuracy. Its characteristics concerning cryogenic losses, cold geometry and the resulting magnetic-field quality are presented and an outlook on the series production of superconducting dipoles for SIS100 is given.
机译:在德国达姆施塔特的Antiproton和Ion Research(Fair)的国际设施中,在现代物理学的各个领域开发了一个加速器复合物。在SIS100重离子同步rotron中,公平的主要加速器,超导偶极子用于弯曲粒子束。快速倾斜的偶极子是3米长的超级弯曲磁体,在4.5k下操作。通过AB / B <±6·10〜(-4)给出足够的光束稳定性所需的场均匀性的要求。第一个系列(FOS)偶极子的强烈测量程序显示出优异的淬火行为,低于预期的AC损耗,产生SIS100冷冻液的主负荷。 FOS能够提供1.9吨的场强度。然而,随着复杂的测量系统,检测到偶极场的轻微扭曲。通过适当的几何测量和模拟,跟踪这些效果以使轭的机械不准确。在对替代制造技术的调查之后,建立了具有新轭的磁铁,以实质的变化来提高机械精度。给出了其有关低温损耗,冷几何和所得磁场质量的特性,给出了SIS100的串联生产的串联生产。

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