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February 2, 2026Monthly Notices of the Royal Astronomical Society0 citationsOpen Access

A neutrino flare candidate potentially associated with X-ray emission from tidal disruption event ATLAS17jrp

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RLR H LiCYChengchao YuanHHHao-Ning He

Key Points

  • This research aims to investigate the association between neutrino emissions and tidal disruption events through analysis of X-ray data.
  • Conducted a time-dependent unbinned likelihood analysis using ten years of IceCube muon-track data.
  • Focused on ten tidal disruption events (TDEs) confirmed to have X-ray detections.
  • Analyzed data from 2008 to 2018 and compared neutrino events to TDE X-ray activity.
  • Identified a neutrino flare candidate associated with TDE ATLAS17jrp, occurring 19 days post X-ray detection.
  • The flare lasted for 56 days with a post-trial p-value of 0.01.
  • Results suggest a hint of correlation between TDEs and high-energy neutrinos, pointing to the need for further study.

Abstract

Abstract Tidal disruption events (TDEs), in which stars are disrupted by supermassive black holes, have been proposed as potential sources of high-energy neutrinos through hadronic interactions. X-ray-bright TDEs provide dense photon fields conducive to neutrino production via proton-photon (pγ) processes. We conducted a time-dependent unbinned likelihood analysis of ten years (2008 − 2018) of IceCube muon-track data, focusing on ten TDEs with confirmed X-ray detections during this period. We report a neutrino flare candidate spatially and temporally coincident with the TDE ATLAS17jrp, occurring 19 days after the onset of its X-ray activity and lasting for 56 days, with a post-trial p-value of 0.01. This significance is modest, representing a hint of an association. We illustrate the neutrino emission using a simple lepto-hadronic model, where X-ray photons serve as target fields. While this model can account for the neutrino data around 100 TeV, the low-energy neutrinos may imply contributions from an additional component. Although constrained by the sample size of X-ray-detected TDEs, these results underscore the need for high-cadence X-ray monitoring and future neutrino observatories to further explore the connection between TDEs and high-energy neutrinos.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/6980fc55c1c9540dea80e214https://doi.org/10.1093/mnras/stag188
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