论文标题
Askaryan无线电阵列的低阈值超基因中微子搜索
A low-threshold ultrahigh-energy neutrino search with the Askaryan Radio Array
论文作者
论文摘要
为了追求在秩序EEV的能量下的仍然难以捉摸的超高能量(UHE)中微子通量时,使用In-Ice Askaryan无线电技术的检测器越来越针对较低的触发阈值。这导致了对中微子的触发级敏感性的提高。使用Askaryan无线电阵列(ARA)收集的数据,我们以迄今为止达到的最低阈值搜索中微子候选者,从而改善了分析级别的级别敏感性。进行了降低阈值第五ARA站的208.7〜天数的数据集的中微子搜索,在模拟混合组合中性磁通液中,在所有能量上达到了68 \%的分析效率,其预期背景为0.10 _ _ {-0.04}^{ - 0.04}^{+0.06}^{+0.06}^{+0.06} $。我们观察到通过我们的分析的一个事件,并继续使用Feldman-Cousins构造设置中微子通量极限。我们表明,可以通过分析来携带改进的触发级灵敏度,从而激发了分阶段的阵列触发技术,以在未来的无线电检测实验中使用。我们还使用该检测器的所有可用数据包括一个投影。最后,我们发现未来的分析将受益于对表面附近事件的研究,以充分了解大型检测器的预期背景。
In the pursuit of the measurement of the still-elusive ultrahigh-energy (UHE) neutrino flux at energies of order EeV, detectors using the in-ice Askaryan radio technique have increasingly targeted lower trigger thresholds. This has led to improved trigger-level sensitivity to UHE neutrinos. Working with data collected by the Askaryan Radio Array (ARA), we search for neutrino candidates at the lowest threshold achieved to date, leading to improved analysis-level sensitivities. A neutrino search on a data set with 208.7~days of livetime from the reduced-threshold fifth ARA station is performed, achieving a 68\% analysis efficiency over all energies on a simulated mixed-composition neutrino flux with an expected background of $0.10_{-0.04}^{+0.06}$ events passing the analysis. We observe one event passing our analysis and proceed to set a neutrino flux limit using a Feldman-Cousins construction. We show that the improved trigger-level sensitivity can be carried through an analysis, motivating the Phased Array triggering technique for use in future radio-detection experiments. We also include a projection using all available data from this detector. Finally, we find that future analyses will benefit from studies of events near the surface to fully understand the background expected for a large-scale detector.