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Optical and X-ray early follow-up of ANTARES neutrino alerts

机译:ANTARES中微子警报的光学和X射线早期随访

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摘要

High-energy neutrinos could be produced in the interaction of charged cosmic rays with matter or radiation surrounding astrophysical sources. Even with the recent detection of extraterrestrial high-energy neutrinos by the IceCube experiment, no astrophysical neutrino source has yet been discovered. Transient sources, such as gamma-ray bursts, core-collapse supernovae, or active galactic nuclei are promising candidates. Multi-messenger programs offer a unique opportunity to detect these transient sources. By combining the information provided by the ANTARES neutrino telescope with information coming from other observatories, the probability of detecting a source is enhanced, allowing the possibility of identifying a neutrino progenitor from a single detected event.
机译:带电宇宙射线与天体物理源周围的物质或辐射的相互作用可能产生高能中微子。即使最近通过IceCube实验检测到了地外高能中微子,也尚未发现天体中微子的来源。瞬变源,例如伽马射线爆发,核塌陷超新星或活跃的银河核,都是很有前途的候选物。多信使程序为检测这些瞬态信号源提供了独特的机会。通过将ANTARES中微子望远镜提供的信息与其他天文台提供的信息相结合,可以提高探测到源的可能性,从而有可能从单个探测到的事件中识别中微子祖细胞。

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