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Search for neutrino emission from gamma-ray flaring blazars with the ANTARES telescope

机译:使用ANTARES望远镜搜索来自γ射线火炬的中微子的发射

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The ANTARES telescope is well-suited to detect neutrinos produced in astrophysical transient sources as it can observe a full hemisphere of the sky at all times with a high duty cycle. Radio-loud active galactic nuclei with jets pointing almost directly towards the observer, the so-called blazars, are particularly attractive potential neutrino point sources. The all-sky monitor LAT on board the Fermi satellite probes the variability of any given gamma-ray bright blazar in the sky on time scales of hours to months. Assuming hadronic models, a strong correlation between the gamma-ray and the neutrino fluxes is expected. Selecting a narrow time window on the assumed neutrino production period can significantly reduce the background. An unbinned method based on the minimization of a likelihood ratio was applied to a subsample of data collected in 2008 (61 days live time). By searching for neutrinos during the high state periods of the AGN light curve, the sensitivity to these sources was improved by about a factor of two with respect to a standard time-integrated point source search. First results on the search for neutrinos associated with ten bright and variable Fermi sources are presented.
机译:ANTARES望远镜非常适合检测天体物理瞬变源中产生的中微子,因为它可以始终以高占空比观察整个天空的半球。射流几乎直接指向观察者的放射性大声活跃银河核,即所谓的blazars,是特别有吸引力的潜在中微子点源。费米卫星上的全天候监控器LAT会在数小时至数月的时间范围内探测天空中任何给定的伽马射线明亮的巴扎尔的变化。假设强子模型,伽马射线与中微子通量之间存在很强的相关性。在假定的中微子产生周期上选择一个狭窄的时间窗口可以显着降低背景。一种基于最小化似然比的未绑定方法应用于2008年收集的数据的子样本(实时生存61天)。通过在AGN光曲线的高态期间搜索中微子,相对于标准时间积分点源搜索,对这些源的灵敏度提高了大约两倍。提出了与10个明亮可变的费米源相关的中微子的搜索结果。

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