论文标题

多波长搜索Icecube中微子的起源

Multiwavelength search for the origin of IceCube's neutrinos

论文作者

Kun, Emma, Bartos, Imre, Tjus, Julia Becker, Biermann, Peter L., Franckowiak, Anna, Halzen, Francis

论文摘要

由Icecube中微子天文台检测到的天体物理高能中微子的起源仍然是一个谜。在本文中,我们搜索了Icecube Neutrino天文台记录的$ 70 $ track-type中微子事件的$ 90 $%围栏区域内的中微子源候选。通过使用Fermi-LAT 4FGL-DR2,Swift-XRT 2SXPS和Crates目录,我们确定了可能的伽马,X射线和平面光谱无线电候选曲目型中微子的来源。我们发现,基于来源的亮度及其与轨道类型Icecube中微子的空间相关性,构造的中微子样品代表了从完整的Fermi-Lat 4FGL-DR2/Swift-dr2/swift-xrt 2Sxps/crates Catalogs Catalogs Catalogs Catalogs($2.1σ$,1.2σ$1.2σ$1.2σ$1.2σ$,1.2σ$ 2Sten)中获得的特殊源。 $ 4.8〜 \ MATHRM {GHz} $,$2.1σ$ at $ 8.4〜 \ MATHRM {GHz} $,假定为50%的天体物理信号)。在收集红移并得出板条箱的子样本之后,在红移 - 亮度飞机上完成了目录之后,我们发现4.8 GHz($ 8.4 $ 〜GHz)子样本可以解释4%至53%($ 3 $%$%和$ 42 $%和$ 42 $%)的neprinos(90%C.L.)($ C.L.)($ C.L.)是pripity($ C.L.)通量。溢出表明,样本的一部分可能有助于贡献,并且在源目录选择中更复杂的方案对于识别$5σ$级别的中微子来源是必要的。我们的选择是进一步选择正确来源的起点。

The origin of astrophysical high-energy neutrinos detected by the IceCube Neutrino Observatory remains a mystery to be solved. In this paper we search for neutrino source candidates within the $90$% containment area of $70$ track-type neutrino events recorded by the IceCube Neutrino Observatory. By employing the Fermi-LAT 4FGL-DR2, the Swift-XRT 2SXPS and the CRATES catalogs, we identify possible gamma, X-ray and flat-spectrum radio candidate sources of track-type neutrinos. We find that based on the brightness of sources and their spatial correlation with the track-type IceCube neutrinos, the constructed neutrino samples represent special populations of sources taken from the full Fermi-LAT 4FGL-DR2/Swift-XRT 2SXPS/CRATES catalogs with similar significance ($2.1σ$, $1.2σ$, $2σ$ at $4.8~\mathrm{GHz}$, $2.1σ$ at $8.4~\mathrm{GHz}$, respectively, assuming 50% astrophysical signalness). After collecting redshifts and deriving sub-samples of the CRATES catalog complete in the redshift--luminosity plane, we find that the 4.8 GHz ($8.4$~GHz) sub-sample can explain between 4% and 53% ($3$% and $42$%) of the neutrinos (90% C.L.), when the probability to detect a neutrino is proportional to the ($k$-corrected) radio flux. The overfluctuations indicate that a part of the sample is likely to contribute and that more sophisticated schemes in the source catalog selection are necessary to identify the neutrino sources at the $5σ$ level. Our selection serves as a starting point to further select the correct sources.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源