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Accelerator system for the PRISM based muon to electron conversion experiment

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arxiv 1310.0804 v1 pith:LYQT7XK5 submitted 2013-10-02 physics.acc-ph

classification physics.acc-ph
keywords prismbeamexperimentffaghighmuonringaccelerator
verification ladder T0 review T1 audit T2 compute T3 formal
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The next generation of lepton flavor violation experiments need high intensity and high quality muon beams. Production of such beams requires sending a short, high intensity proton pulse to the pion production target, capturing pions and collecting the resulting muons in the large acceptance transport system. The substantial increase of beam quality can be obtained by applying the RF phase rotation on the muon beam in the dedicated FFAG ring, which was proposed for the PRISM project.This allows to reduce the momentum spread of the beam and to purify from the unwanted components like pions or secondary protons. A PRISM Task Force is addressing the accelerator and detector issues that need to be solved in order to realize the PRISM experiment. The parameters of the required proton beam, the principles of the PRISM experiment and the baseline FFAG design are introduced. The spectrum of alternative designs for the PRISM FFAG ring are shown. Progress on ring main systems like injection and RF are presented. The current status of the study and its future directions are discussed.

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  1. The Advanced Muon Facility: a proposed multi-purpose muon facility at Fermilab

    hep-ex 2025-01 conditional novelty 4.0 of 10

    The paper proposes the Advanced Muon Facility, a Fermilab storage ring complex designed to search for charged lepton flavor violation in all three muon-to-electron channels at sensitivities orders of magnitude beyond ...

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