Flat Spectrum Radio Quasars as high-energy neutrino sources
arXiv:2507.17908 · doi:10.1051/0004-6361/202554527
Abstract
The astrophysical sources responsible for the production of high-energy neutrinos remain largely uncertain. The strongest associations suggest a correlation between neutrinos and active galactic nuclei. However, it is still unclear which specific regions and mechanisms of the accreting supermassive black hole are responsible for their production. In this paper we investigate the correlation between the positions of IceCat-1 neutrino events and a large, optically selected quasar catalogue extracted from the Sloan Digital Sky Survey. Within this sample, we distinguish radio-quiet quasars from flat-spectrum radio quasars (FSRQs) based on radio emission data from the Cosmic Lens All Sky Survey (CLASS) catalogue. While all the associations between neutrino events and radio-quiet quasars are consistent with being random matches, FSRQs exhibit a moderately significant correlation (2.7 sigma) with neutrino positions. Additionally, we observe that the distribution of minimum distances between neutrino events and FSRQs differs significantly for events at declinations above and below 20 deg. In particular, using the Kolmogorov-Smirnov test, we find that the high-declination event distribution deviates strongly (4 sigma) from a random distribution. We interpret all these results as an indication that a large fraction of the neutrino events (>60%) observed by IceCube could be produced by the FSRQs and that the emission mechanism is likely related to the relativistic jets rather than the radio-quiet component of these sources, such as the accretion disk or corona.
9 pages, 7 figures; Accepted for publication in Astronomy and Astrophysics
References in corpus (25)
- A Catalog of Quasar Properties from SDSS DR7
- Evidence for neutrino emission from the nearby active galaxy NGC 1068
- Time-integrated Neutrino Source Searches with 10 years of IceCube Data
- The 5th edition of the Roma-BZCAT. A short presentation
- All-sky search for time-integrated neutrino emission from astrophysical sources with 7 years of IceCube data
- Radio galaxies and feedback from AGN jets
- TXS 0506+056, the first cosmic neutrino source, is not a BL Lac
- Observational evidence for the origin of high-energy neutrinos in parsec-scale nuclei of radio-bright active galaxies
- Dissecting the regions around IceCube high-energy neutrinos: growing evidence for the blazar connection
- Directional association of TeV to PeV astrophysical neutrinos with radio blazars
- Hidden Hearts of Neutrino Active Galaxies
- Multi-Epoch Modeling of TXS 0506+056 and Implications for Long-Term High-Energy Neutrino Emission
- Structured jets in BL Lac objects: efficient PeV neutrino factories?
- Beginning a journey across the universe: the discovery of extragalactic neutrino factories
- IceCat-1: the IceCube Event Catalog of Alert Tracks
- 3HSP J095507.9+355101: a flaring extreme blazar coincident in space and time with IceCube-200107A
- Growing evidence for high-energy neutrinos originating in radio blazars
- A search for neutrino emission from cores of Active Galactic Nuclei
- The space density of z>4 blazars
- Correlating high-energy IceCube neutrinos with 5BZCAT blazars and RFC sources
- Search for Astrophysical Neutrinos from 1FLE Blazars with IceCube
- The evolution of the heaviest super-massive black-holes in jetted AGNs
- Neutrino telescopes and high-energy cosmic neutrinos
- Constraints on populations of neutrino sources from searches in the directions of IceCube neutrino alerts
- VLBI Analysis of a Potential High-Energy Neutrino Emitter Blazar