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Linear fixed-field multipass arcs for recirculating linear accelerators

机译:用于循环直线加速器的线性固定场多通弧

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Recirculating linear accelerators (RLA's) provide a compact and efficient way of accelerating particle beams to medium and high energies by reusing the same linac for multiple passes. In the conventional scheme, after each pass, the different energy beams coming out of the linac are separated and directed into appropriate arcs for recirculation, with each pass requiring a separate fixed-energy arc. In this paper we present a concept of an RLA return arc based on linear combined-function magnets, in which two and potentially more consecutive passes with very different energies are transported through the same string of magnets. By adjusting the dipole and quadrupole components of the constituting linear combined-function magnets, the arc is designed to be achromatic and to have zero initial and final reference orbit offsets for all transported beam energies. We demonstrate the concept by developing a design for a droplet-shaped return arc for a dogbone RLA capable of transporting two beam passes with momenta different by a factor of 2. We present the results of tracking simulations of the two passes and lay out the path to end-to-end design and simulation of a complete dogbone RLA.
机译:再循环线性加速器(RLA)通过将同一个直线加速器重复使用多次,提供了一种紧凑而有效的方式来将粒子束加速至中能量和高能量。在常规方案中,在每次通过之后,从直线加速器发出的不同能量束被分离并引导到适当的电弧中以进行再循环,其中每次通过都需要单独的固定能量电弧。在本文中,我们提出了一种基于线性组合功能磁体的RLA返回弧的概念,其中两次和可能更多的具有非常不同能量的连续遍历通过同一列磁体传输。通过调节构成线性组合功能磁体的偶极和四极分量,弧被设计为消色差的,并且对于所有传输的束能量,零和零初始和最终参考轨道偏移。我们通过为狗骨RLA的液滴形回弧设计开发这一概念进行了演示,该狗骨形RLA能够以相差2的倍数来传输两个光束通过。我们给出了两次通过的跟踪仿真结果并规划了路径完整狗骨形RLA的端到端设计和仿真。

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