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Prospects of measuring oscillated decay-at-rest neutrinos at long baselines

机译:在长基线测量振荡衰减的中微子的前景

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In addition to the next generation of beam-based neutrino experiments and their associated detectors, a number of intense, low-energy neutrino production sources from decays at rest will be in operation. In this work, we explore the physics opportunities with decay-at-rest neutrinos for complementary measurements of oscillation parameters at long baselines. The J-PARC Spallation Neutron Source, for example, will generate neutrinos from a variety of decay-at-rest (DAR) processes, specifically those of pions, muons, and kaons. Other proposed sources will produce large numbers of stopped pions and muons. We demonstrate the ability of the upcoming Hyper-Kamiokande experiment to detect the monochromatic kaon decay-at-rest neutrinos from J-PARC after they have traveled several hundred kilometers and undergone oscillations. This measurement will serve as a valuable cross-check in constraining our understanding of neutrino oscillations in a new regime of neutrino energy and baseline length. We also study the expected event rates from pion and muon DAR neutrinos in liquid argon and water detectors and their sensitivities to the charge-parity- ( C P ) violating phase δ CP .
机译:除了下一代基于光束的中微子实验及其相关的检测器之外,来自休息衰减的许多强烈的低能量中性产量来源将在运行中。在这项工作中,我们探讨了腐烂的物理机会,用于长长的基线互补测量振荡参数的互补测量。例如,J-PARC介质中子源将从各种衰减(DAR)工艺中产生中微子,特别是折叠型工艺,特别是散息,μONs和卡尔。其他拟议的来源将产生大量停止的散孔和μONs。我们展示了即将到来的超高康甘代架实验检测J-PARC在经历数百公里并经过振荡之后从J-PARC检测单色kaon衰减的能力的能力。该测量将作为在中微子能量和基线长度的新制度中约束我们对中微子振荡的理解的宝贵交叉检查。我们还研究了液体氩和水检测器中的磁共振和μ子中微子的预期事件速率及其对违反阶段δCP的电荷奇偶脉(C p)的敏感性。

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