Search for neutrino sources from the direction of IceCube alert events

The IceCube Collaboration

Research output: Contribution to journalConference articlepeer-review

Abstract

We search for additional neutrino emission from the direction of IceCube’s highest energy public alert events. We take the arrival direction of 122 events with a high probability of being of astrophysical origin and look for steady and transient emission. We investigate 11 years of reprocessed and recalibrated archival IceCube data. For the steady scenario, we investigate if the potential emission is dominated by a single strong source or by many weaker sources. In contrast, for the transient emission we only search for single sources. In both cases, we find no significant additional neutrino component. Not having observed any significant excess, we constrain the maximal neutrino flux coming from all 122 origin directions (including the high-energy events) to Φ90%, 100 TeV = 1.2 × 10−15 (TeV cm2 s)−1 at 100 TeV, assuming an E−2 emission, with 90% confidence. The most significant transient emission of all 122 investigated regions of interest is the neutrino flare associated with the blazar TXS 0506+056. With the recalibrated data, the flare properties of this work agree with previous results. We fit a Gaussian time profile centered at μT = 57001+3826 MJD and with a width of σT = 64+3510 days. The best fit spectral index is γ = 2.3 ± 0.4 and we fit a single flavor fluence of J100 TeV = 1.2+1018 × 10−8 (TeV cm2)−1. The global p-value for transient emission is pglobal = 0.156 and, therefore, compatible with background.

Original languageEnglish (US)
Article number974
JournalProceedings of Science
Volume444
StatePublished - Sep 27 2024
Event38th International Cosmic Ray Conference, ICRC 2023 - Nagoya, Japan
Duration: Jul 26 2023Aug 3 2023

All Science Journal Classification (ASJC) codes

  • General

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