English

Constraining High-Energy Cosmic Neutrino Sources: Implications and Prospects

High Energy Astrophysical Phenomena 2016-12-16 v2 Cosmology and Nongalactic Astrophysics High Energy Physics - Phenomenology

Abstract

We consider limits on the local (z=0z=0) density (n0n_0) of extragalactic neutrino sources set by the nondetection of steady high-energy neutrino sources producing 50\gtrsim50 TeV muon multiplets in the present IceCube data, taking into account the redshift evolution, luminosity function and neutrino spectrum of the sources. We show that the lower limit depends moderately on source spectra and strongly on redshift evolution. We find n0108107 Mpc3n_0\gtrsim{10}^{-8}-{10}^{-7}~{\rm Mpc}^{-3} for standard candle sources evolving rapidly, ns(1+z)3n_s\propto{(1+z)}^3, and n0106105 Mpc3n_0\gtrsim{10}^{-6}-{10}^{-5}~{\rm Mpc}^{-3} for nonevolving sources. The corresponding upper limits on their neutrino luminosity are Lνμeff10421043 erg s1L_{{\nu_\mu}}^{\rm eff}\lesssim10^{42}-10^{43}~{\rm erg}~{\rm s}^{-1} and Lνμeff10411042 erg s1L_{{\nu_\mu}}^{\rm eff}\lesssim10^{41}-10^{42}~{\rm erg}~{\rm s}^{-1}, respectively. Applying these results to a wide range of classes of potential sources, we show that powerful blazar jets associated with active galactic nuclei are unlikely to be the dominant sources. For almost all other steady candidate source classes (including starbursts, radio galaxies, and galaxy clusters and groups), an order of magnitude increase in the detector sensitivity at 0.11\sim0.1-1 PeV will enable a detection (as point sources) of the few brightest objects. Such an increase, which may be provided by next-generation detectors like IceCube-Gen2 and an upgraded KM3NET, can improve the limit on n0n_0 by more than two orders of magnitude. Future gamma-ray observations (by Fermi, HAWC and CTA) will play a key role in confirming the association of the neutrinos with their sources.

Keywords

Cite

@article{arxiv.1607.01601,
  title  = {Constraining High-Energy Cosmic Neutrino Sources: Implications and Prospects},
  author = {Kohta Murase and Eli Waxman},
  journal= {arXiv preprint arXiv:1607.01601},
  year   = {2016}
}

Comments

14 pages, 7 figures, 1 table, accepted for publication in PRD, minor changes (references and discussions added)