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Neutrino factory based on muon-storage-rings to muon colliders: physics and facilities

机译:基于Muon-Storage-Rings的Neutrino工厂到Muon Colliders:物理和设施

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Intense muon sources for the purpose of providing intense high energy neutrino beams (γ factory) represents very interesting possibilities. If successful, such efforts would significantly advance the state of muon technology and provides intermediate steps in technologies required for a future high energy muon collider complex. High intensity muon: production, capture, cooling, acceleration and multi-turn muon storage rings are some of the key technology issues that needs more studies and developments, and will briefly be discussed here. A muon collider requires basically the same number of muons as for the muon storage ring neutrino factory, but would require more cooling, and simultaneous capture of both ±μ. We present some physics possibilities, muon storage ring based neutrino facility concept, site specific examples including collaboration feasibility sutudies, and upgrades to a full collider.
机译:为提供强烈的高能中微梁(γ工厂)的强烈μ子源代表非常有趣的可能性。如果成功,这种努力将大大推进MUON技术的状态,并提供未来高能量MUON撞机复合体所需的技术的中间步骤。高强度μ子:生产,捕获,冷却,加速度和多转μ子存储环是需要更多的研究和开发的关键技术问题,并将在此进行简要讨论。一位μ子撞机需要基本上与μ子存储环中微子厂相同的μONs,但需要更多的冷却,同时捕获±μ。我们介绍了一些物理可能性,基于Muon Storage环的Neutrino设施概念,现场具体示例包括协作可行性Sutifies,并升级到全撞机。

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