A simplified view of blazars: the neutrino background
arXiv:1506.09135 · doi:10.1093/mnras/stv1467
Abstract
Blazars have been suggested as possible neutrino sources long before the recent IceCube discovery of high-energy neutrinos. We re-examine this possibility within a new framework built upon the blazar simplified view and a self-consistent modelling of neutrino emission from individual sources. The former is a recently proposed paradigm that explains the diverse statistical properties of blazars adopting minimal assumptions on blazars' physical and geometrical properties. This view, tested through detailed Monte Carlo simulations, reproduces the main features of radio, X-ray, and gamma-ray blazar surveys and also the extragalactic gamma-ray background at energies > 10 GeV. Here we add a hadronic component for neutrino production and estimate the neutrino emission from BL Lacs as a class, "calibrated" by fitting the spectral energy distributions of a preselected sample of BL Lac objects and their (putative) neutrino spectra. Unlike all previous papers on this topic, the neutrino background is then derived by summing up at a given energy the fluxes of each BL Lac in the simulation, all characterised by their own redshift, synchrotron peak energy, gamma-ray flux, etc. Our main result is that BL Lacs as a class can explain the neutrino background seen by IceCube above ~ 0.5 PeV while they only contribute ~ 10% at lower energies, leaving room to some other population(s)/physical mechanism. However, one cannot also exclude the possibility that individual BL Lacs still make a contribution at the ~ 20% level to the IceCube low-energy events. Our scenario makes specific predictions testable in the next few years.
13 pages, 5 figures, accepted for publication in MNRAS
References in corpus (19)
- The spectrum of isotropic diffuse gamma-ray emission between 100 MeV and 820 GeV
- The power of relativistic jets is larger than the luminosity of their accretion disks
- The Origin of the Extragalactic Gamma-Ray Background and Implications for Dark-Matter Annihilation
- Flavor Ratio of Astrophysical Neutrinos above 35 TeV in IceCube
- Photohadronic origin of -ray BL Lac emission: implications for IceCube neutrinos
- An improved limit to the diffuse flux of ultra-high energy neutrinos from the Pierre Auger Observatory
- Fermi Large Area Telescope Third Source Catalog
- Are both BL Lacs and pulsar wind nebulae the astrophysical counterparts of IceCube neutrino events?
- Measurement of the Flux of Ultra High Energy Cosmic Rays by the Stereo Technique
- Hadronic models of blazars require a change of the accretion paradigm
- Bethe-Heitler emission in BL Lacs: filling the gap between X-rays and -rays
- The jet-disc connection in AGN
- Mid-Infrared Fine Structure Line Ratios in Active Galactic Nuclei Observed with Spitzer IRS: Evidence for Extinction by the Torus
- 1WHSP: an IR-based sample of 1,000 VHE -ray blazar candidates
- A simplified view of blazars: contribution to the X-ray and gamma-ray cosmic backgrounds
- Analysis of the cumulative neutrino flux from Fermi-LAT blazar populations using 3 years of IceCube data
- Correlation of Photon and Neutrino Fluxes in Blazars and Gamma Ray Bursts
- A simplified view of blazars: the very high energy gamma-ray vision
- Multi-frequency, multi-messenger astrophysics with Swift. The case of blazars
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- Comprehensive Multimessenger Modeling of the Extreme Blazar 3HSP J095507.9+355101 and Predictions for IceCube
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