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Opposite field septum magnet system for the separation of charged particle beams

机译:对置的隔片磁体系统,用于分离带电粒子束

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The Japan Hadron Facility (JHF) accelerator complex comprises a 50-GeV main synchrotron, a 3-GeV rapid-cycling synchrotron, and a 400-MeV linac. The accelerators provide high-intensity, high-energy proton beams for various scientific fields. These high-intensity, high-energy accelerators, especially the 50-GeV main synchrotron, impose tight demands on the injection/extraction septum magnets for a thin structure, large aperture and high operating field. But to manufacture high field septum magnets on the condition of a large aperture is very difficult because of its extraordinarily strong electromagnetic force due to the self-field. To cope with these tight demands, new design concepts of septa are required. An opposite-field septum magnet system is one of the solutions to realize a thin septa or very high-field septum magnets.
机译:日本强子基金(JHF)加速器综合体包括50 GeV主同步加速器,3-GeV快速循环同步加速器和400 MeV直线加速器。加速器为各种科学领域提供高强度,高能量的质子束。这些高强度,高能量的加速器,特别是50-GeV主同步加速器,对注入/提取隔膜磁体提出了严格的要求,以实现薄型结构,大孔径和高工作磁场。但是在大孔径条件下制造高磁场的隔片磁体非常困难,因为其由于自磁场而产生的异常强大的电磁力。为了满足这些严格的要求,需要使用隔垫的新设计概念。对场隔片磁体系统是实现薄隔片或极高隔片磁体的解决方案之一。

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