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A very intense neutrino super beam experiment for leptonic CP violation discovery based on the European spallation source linac

机译:基于欧洲散裂源直线加速器的超强中微子超束实验,用于轻子CP违规发现

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Very intense neutrino beams and large neutrino detectors will be needed in order to enable the discovery of CP violation in the leptonic sector. We propose to use the proton linac of the European Spallation Source currently under construction in Lund, Sweden, to deliver, in parallel with the spallation neutron production, a very intense, cost effective and high performance neutrino beam. The baseline program for the European Spallation Source linac is that it will be fully operational at 5 MW average power by 2022, producing 2 GeV 2.86 ms long proton pulses at a rate of 14 Hz. Our proposal is to upgrade the linac to 10 MW average power and 28 Hz, producing 14 pulses/s for neutron production and 14 pulses/s for neutrino production. Furthermore, because of the high current required in the pulsed neutrino horn, the length of the pulses used for neutrino production needs to be compressed to a few μs with the aid of an accumulator ring. A long baseline experiment using this Super Beam and a megaton underground Water Cherenkov detector located in existing mines 300-600 km from Lund will make it possible to discover leptonic CP violation at 5 σ significance level in up to 50% of the leptonic Dirac CP-violating phase range. This experiment could also determine the neutrino mass hierarchy at a significance level of more than 3 σ if this issue will not already have been settled by other experiments by then. The mass hierarchy performance could be increased by combining the neutrino beam results with those obtained from atmospheric neutrinos detected by the same large volume detector. This detector will also be used to measure the proton lifetime, detect cosmological neutrinos and neutrinos from supernova explosions. Results on the sensitivity to leptonic CP violation and the neutrino mass hierarchy are presented.
机译:为了能够在轻子区域发现CP违规,将需要非常强烈的中微子束和大型中微子探测器。我们建议使用目前正在瑞典隆德建造的欧洲散裂源的质子直线加速器,与散裂中子生产同时提供非常强,经济高效的高性能中微子束。欧洲散裂源直线加速器的基准计划是,到2022年它将以5兆瓦的平均功率全面运行,以14 Hz的频率产生2个GeV 2.86毫秒长的质子脉冲。我们的建议是将直线加速器升级到10 MW平均功率和28 Hz,为中子生产提供14脉冲/秒,为中微子产生14脉冲/秒。此外,由于在脉冲中微子喇叭中需要大电流,因此用于产生中微子的脉冲的长度需要借助于蓄能器环压缩到几微秒。使用超光束和位于距隆德300-600 km的现有矿山中的百万吨地下水Cherenkov探测器进行的长期基线实验,将有可能在高达50%的Dirac CP-Lepton CP-中以5σ显着性水平发现Leptonic CP违规。超出相位范围。如果届时其他实验尚未解决此问题,则该实验还可以确定显着性水平大于3σ的中微子质量等级。通过将中微子束结果与从同一大体积探测器检测到的大气中微子获得的结果相结合,可以提高质量等级性能。该探测器还将用于测量质子寿命,探测宇宙中微子和超新星爆炸产生的中微子。给出了对轻子CP违反和中微子质量等级的敏感性的结果。

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