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The use the a high intensity neutrino beam from the ESS proton linac for measurement of neutrino CP violation and mass hierarchy

机译:使用来自ESS质子直线加速器的高强度中微子束测量中微子CP违规和质量等级

摘要

It is proposed to complement the ESS proton linac with equipment that would enable the production, concurrently with the production of the planned ESS beam used for neutron production, of a 5 MW beam of 10$^{23}$ 2.5 GeV protons per year in microsecond short pulses to produce a neutrino Super Beam, and to install a megaton underground water Cherenkov detector in a mine to detect $u_e$ appearance in the produced $u_mu$ beam. Results are presented of preliminary calculations of the sensitivity to neutrino CP violation and the mass hierarchy as a function of the neutrino baseline. The results indicate that, with 8 years of data taking with an antineutrino beam and 2 years with a neutrino beam and a baseline distance of around 400 km, CP violation could be discovered at 5 $sigma$ (3 $sigma$) confidence level in 48% (73%) of the total CP violation angular range. With the same baseline, the neutrino mass hierarchy could be determined at 3 $sigma$ level over most of the total CP violation angular range. There are several underground mines with a depth of more than 1000 m, which could be used for the creation of the underground site for the neutrino detector and which are situated within or near the optimal baseline range.
机译:提议用设备进行补充,以使ESS质子直线加速器能够与计划中的ESS束生产同时用于中子生产,而该装置每年可生产5MW的10 $ ^ {23} $ 2.5 GeV质子。微秒短脉冲产生中微子超级束,并在矿井中安装一个百万吨的地下水Cherenkov检测器,以检测所产生的 nu_mu $束中的外观。结果显示了对中微子CP违规的敏感性和作为中微子基线的函数的质量等级的初步计算。结果表明,使用抗中微子束8年的数据和使用中微子束2年的数据以及基线距离约为400 km,可以发现置信度为5 $ sigma $(3 $ sigma $)的CP违规级别位于CP违反总角度范围的48%(73%)。在相同的基线下,中微子质量层次可以在整个CP违规角度范围的大部分范围内确定为3美元/西格玛水平。有几个深度超过1000 m的地雷,可用于创建中微子探测器的地下场所,并且位于最佳基线范围内或附近。

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