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Optimized Beam Optics for Muon Acceleration

机译:用于MUON加速的优化光束光学

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A conceptual design of a Ring Cooler driven muon acceleration based on recirculating superconducting linacs is proposed. In the presented scenario, acceleration starts after ionization cooling at 250 MeV/c and proceeds to 20 GeV, where the beam is injected into a neutrino factory storage ring. The key technical issues are addressed; such as: the choice of acceleration technology (superconducting versus normal conducting) and the choice of RF frequency, and finally, implementation of the overall acceleration scheme: capture, acceleration, transport and preservation of large phase space of fast decaying species. Beam transport issues for large-momentum-spread beams are accommodated by appropriate lattice design choices. The proposed arc optics is further optimized with a sextupole correction to suppress chromatic effects contributing to emittance dilution.
机译:提出了一种基于再循环超导线圈的环形冷却器驱动μ子加速度的概念设计。在呈现的场景中,加速度在电离冷却后在250 mev / c处冷却并进入20个GEV,其中光束注入中微子工厂储存环。关键的技术问题是解决的;如:加速技术的选择(超导与正常导电)和RF频率的选择,最后,实施整体加速度方案:捕获,加速,运输和保存的大相空间的快速腐烂物种。通过适当的晶格设计选择,可以容纳大型扩频光束的光束运输问题。所提出的电弧光学器件通过Sextupole校正进一步优化,以抑制有助于膨胀稀释的色差。

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