论文标题
部分可观测时空混沌系统的无模型预测
Review of the online analyses of multi-messenger alerts and electromagnetic transient events with the ANTARES neutrino telescope
论文作者
论文摘要
通过不断监测至少一个完整的天空半球,中微子望远镜的设计良好,可检测瞬时天体物理事件发出的中微子。已经执行了使用Antares望远镜进行实时搜索,以寻找与Swift和Fermi卫星一起检测到的伽马射线爆发的中微子候选物,IceCube注册的高质中微子事件,由HAWC监测的Blazars的短暂性事件,由HAWC监测,由Amon-Neyutrino Comenciences和Gravitections和Graverations cottorations cotsations compitates canverations sandicates Waver candistations sandivates candidates candidates sandivates candidates sandivates sandivates candivates cantivates contrestications cantivates。通过需要时间巧合,这种方法提高了潜在发现的敏感性和意义。得益于与Antares望远镜重建的中微子候选者的良好角度准确性,重合检测还可以改善非电池局部触发器的位置区域,例如通过重力波干涉仪检测到的触发器。本文总结了安塔尔斯望远镜在01/2014和02/2022之间执行的后续结果,这对应于数据的结束。
By constantly monitoring at least one complete hemisphere of the sky, neutrino telescopes are well designed to detect neutrinos emitted by transient astrophysical events. Real-time searches with the ANTARES telescope have been performed to look for neutrino candidates coincident with gamma-ray bursts detected by the Swift and Fermi satellites, highenergy neutrino events registered by IceCube, transient events from blazars monitored by HAWC, photon-neutrino coincidences by AMON notices and gravitational wave candidates observed by LIGO/Virgo. By requiring temporal coincidence, this approach increases the sensitivity and the significance of a potential discovery. Thanks to the good angular accuracy of neutrino candidates reconstructed with the ANTARES telescope, a coincident detection can also improve the positioning area of non-well localised triggers such as those detected by gravitational wave interferometers. This paper summarises the results of the follow-up performed by the ANTARES telescope between 01/2014 and 02/2022, which corresponds to the end of the data taking period.