Indirect search of heavy neutral leptons using the DUNE near detector

IF 1.9 3区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Frontiers in Physics Pub Date : 2024-05-28 DOI:10.3389/fphy.2024.1398070
S. Carbajal, A. M. Gago
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Abstract

We evaluate the potential of the DUNE near detector (DUNEND) for establishing bounds for heavy neutral leptons (HNLs). This is achieved by studying how the presence of HNLs affects the production rates of active neutrinos, therefore creating a deficit in the neutrino charged current (CC) events at the LArTPC of the DUNEND. The estimated bounds on HNLs are calculated for masses between 1 eV and 500 MeV. We consider 10 years of operation (five in neutrino and antineutrino modes) and obtain limits of |Uμ4|2 &lt; 9 × 10−3 (4 × 10−2) and |Ue4|2 &lt; 7 × 10−3 (3 × 10−2) for masses below 10 MeV and a 5% (20%) overall normalization uncertainty in the neutrino charged current event rate prediction. These limits, within the region of masses below 2 (10) MeV, are better than those that can be achieved by DUNE direct searches for the case of a 5% (20%) uncertainty. When a conservative 20% uncertainty is present, our limits can only improve current constraints on |Ue4|2 by up to a factor of 3 in a small region of approximately 5 eV and set limits on |Uμ4|2 in a mass region free of constraints (40 eV–1 MeV).
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利用 DUNE 近探测器间接搜索重中性轻子
我们评估了 DUNE 近探测器(DUNEND)在确定重中性轻子(HNLs)边界方面的潜力。这是通过研究 HNLs 的存在如何影响主动中微子的产生率,从而在 DUNEND 的 LArTPC 中造成中微子带电电流(CC)事件的赤字来实现的。对 HNLs 的估计界限是针对质量在 1 eV 和 500 MeV 之间的中微子计算的。我们考虑了10年的运行(5年在中微子和反中微子模式下),得到了质量低于10 MeV的|Uμ4|2 &lt; 9 × 10-3(4 × 10-2)和|Ue4|2 &lt; 7 × 10-3(3 × 10-2)的限值,以及中微子带电电流事件率预测中5%(20%)的总体归一化不确定性。在质量低于2(10)MeV的区域内,这些限制优于DUNE直接搜索在5%(20%)不确定性情况下所能达到的限制。当存在保守的20%不确定性时,我们的限值只能在大约5 eV的小区域内将目前对|Ue4|2的约束提高最多3倍,并在没有约束的质量区域(40 eV-1 MeV)对|Uμ4|2设定限值。
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来源期刊
Frontiers in Physics
Frontiers in Physics Mathematics-Mathematical Physics
CiteScore
4.50
自引率
6.50%
发文量
1215
审稿时长
12 weeks
期刊介绍: Frontiers in Physics publishes rigorously peer-reviewed research across the entire field, from experimental, to computational and theoretical physics. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, engineers and the public worldwide.
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