论文标题
搜索高能中微子和超高能宇宙射线的相关性
Search for correlations of high-energy neutrinos and ultra-high energy cosmic rays
论文作者
论文摘要
超高能宇宙射线(UHECR)的来源仍然是高能天体物理学中的主要开放问题之一。如果在天体物理学来源中加速UHECR,则由于与周围的天体物理培养基或环境辐射的相互作用,预计它们会产生高能量的光子和中微子。特别是,中微子是研究UHECR的生产区域和加速度的强大探针,因为它们对磁性偏转不敏感,也不对与星际介质的相互作用。将讨论由IceCube和Antares检测到的非常高能中微子候选物以及由Pierre Auger天文台和望远镜阵列测得的最高能源宇宙射线的三种不同分析的结果。前两个分析使用了来自Icecube的高能中微子样本,而选择的Antares具有很大的可能性是天体物理起源。第一个分析跨越了这些选定的中微子事件和UHECR的到达方向。第二个是堆叠的似然分析,假设堆叠的来源高能中微子方向,并在围绕中微子候选者的方向的UHECR数据中寻找过量的数据。相反,第三个分析使用选择的较大的中微子样本来寻找中微子点状的来源。它由一种可能性方法组成,该方法在中微子点源数据中寻找过多的方法,该数据围绕最高能量UHECR的方向而言。
The sources of ultra-high energy cosmic rays (UHECRs) are still one of the main open questions in high-energy astrophysics. If UHECRs are accelerated in astrophysical sources, they are expected to produce high-energy photons and neutrinos due to the interaction with the surrounding astrophysical medium or ambient radiation. In particular, neutrinos are powerful probes for the investigation of the region of production and acceleration of UHECRs since they are not sensitive to magnetic deflections nor to interactions with the interstellar medium. The results of three different analyses that correlate the very high-energy neutrino candidates detected by IceCube and ANTARES and the highest-energy cosmic rays measured by the Pierre Auger Observatory and the Telescope Array will be discussed. The first two analyses use a sample of high-energy neutrinos from IceCube and ANTARES selected to have a significant probability to be of astrophysical origin. The first analysis cross-correlates the arrival directions of these selected neutrino events and UHECRs. The second one is a stacked likelihood analysis assuming as stacked sources the high-energy neutrino directions and looking for excesses in the UHECR data set around the directions of the neutrino candidates. The third analysis instead uses a larger sample of neutrinos selected to look for neutrino point-like sources. It consists of a likelihood method that looks for excesses in the neutrino point-source data set around the directions of the highest-energy UHECRs.