Neutrino Constrains to the Diffuse Gamma-Ray Emission from Accretion Shocks
arXiv:1412.5678 · doi:10.1088/0004-637X/806/2/184
Abstract
Accretion of gas during the large scale structure formation has been thought to give rise to shocks that can accelerate cosmic rays. This process then results in an isotropic extragalactic gamma-ray emission contributing to the extragalactic gamma-ray background observed by the Fermi-LAT. Unfortunately this emission has been difficult to constrain and thus presents an uncertain foreground to any attempts to extract potential dark matter signal. Recently, IceCube has detected high-energy isotropic neutrino flux which could be of an extragalactic origin. In general, neutrinos can be linked to gamma rays since cosmic-ray interactions produce neutral and charged pions where neutral pions decay into gamma rays, while charged pions decay to give neutrinos. By assuming that isotropic high-energy IceCube neutrinos are entirely produced by cosmic rays accelerated in accretion shocks during the process of structure formation, we obtain the strongest constraint to the gamma-ray emission from large scale structure formation (strong) shocks and find that they can make at best ~20% of the extragalactic gamma-ray background, corresponding to neutrino flux with spectral index 2, or ~10% for spectral index 2.46. Since typical objects where cosmic rays are accelerated in accretion shocks are galaxy clusters, observed high-energy neutrino fluxes can then be used to determine the gamma-ray emission of a dominant cluster type and constrain acceleration efficiency, and thus probe the process of large scale structure formation.
Published version. New neutrino data included in revised version along with other minor changes. 14 pages, 1 figure. Comments welcome
References in corpus (14)
- The spectrum of isotropic diffuse gamma-ray emission between 100 MeV and 820 GeV
- Parameterization of Gamma, e^+/- and Neutrino Spectra Produced by p-p Interaction in Astronomical Environment
- Atmospheric and Astrophysical Neutrinos above 1 TeV Interacting in IceCube
- Statistics of X-ray observables for the cooling-core and non-cooling core galaxy clusters
- The Fermi-LAT high-latitude Survey: Source Count Distributions and the Origin of the Extragalactic Diffuse Background
- Star-forming galaxies as the origin of diffuse high-energy backgrounds: Gamma-ray and neutrino connections, and implications for starburst history
- Cosmic Gamma-Ray Background from Star-Forming Galaxies
- Gamma-Ray and Neutrino Backgrounds as Probes of the High-Energy Universe: Hints of Cascades, General Constraints, and Implications for TeV Searches
- High-energy gamma-ray and neutrino backgrounds from clusters of galaxies and radio constraints
- Contribution from Star-Forming Galaxies to the Cosmic Gamma-Ray Background Radiation
- The diffuse gamma-ray flux associated with sub-PeV/PeV neutrinos from starburst galaxies
- The Extragalactic Gamma Ray Background
- New Limits On Gamma-Ray Emission From Galaxy Clusters
- Can Galactic Cosmic Rays Account for Solar 6Li Without Overproducing Gamma Rays?