The Gamma-Ray Background Constrains the Origins of the Radio and X-Ray Backgrounds
arXiv:1011.0437 · doi:10.1088/2041-8205/729/1/L1
Abstract
Cosmic ray protons generate gamma-rays, neutrinos, and secondary electrons and positrons (e+/-) through pion-producing collisions with gas atoms. Any synchrotron or Inverse Compton (IC) radiation from secondary e+/- is therefore accompanied by pionic gamma-rays. Using the extragalactic gamma-ray background, we constrain the contribution of secondary e+/- to the cosmic radio, X-ray, and soft gamma-ray backgrounds. These bounds depend on the unknown hadronic contribution to the gamma-ray background and the backgrounds' source redshifts. With our assumptions, we find that IC-upscattered light from secondaries is <~ 1/4 of the MeV - GeV gamma-ray background and <~ 10% of the 0.5 keV - 1 MeV background (for sources at a redshift z <~ 10). The low intensity of the observed gamma-ray background is marginally inconsistent with a secondary e+/- origin for the radio background reported by ARCADE at ~3 GHz, unless the magnetic field strength in their sources is milliGauss or greater. These limits on the magnetic field strength are sensitive to uncertainties. However, any contribution to the gamma-ray background from sources not responsible for the ARCADE excess increases the inconsistency.
Published in ApJL; 5 pages, 2 figures
References in corpus (22)
- The synthesis of the cosmic X-ray background in the Chandra and XMM-Newton era
- The Spectrum of the Isotropic Diffuse Gamma-Ray Emission Derived From First-Year Fermi Large Area Telescope Data
- The Cosmic Infrared Background Resolved by Spitzer. Contributions of Mid-Infrared Galaxies to the Far-Infrared Background
- Observations of extended radio emission in clusters
- The 0.4 < z < 1.3 star formation history of the Universe as viewed in the far-infrared
- A connection between star formation activity and cosmic rays in the starburst galaxy M 82
- Global cosmic-ray related luminosity and energy budget of the Milky Way
- Inverse Compton Origin of the Hard X-Ray and Soft Gamma-Ray Emission from the Galactic Ridge
- The Physics of the FIR-Radio Correlation: I. Calorimetry, Conspiracy, and Implications
- Magnetic Fields in Starburst Galaxies and The Origin of the FIR-Radio Correlation
- Detection of Gamma Rays From a Starburst Galaxy
- Detection of Gamma-Ray Emission from the Starburst Galaxies M82 and NGC 253 with the Large Area Telescope on Fermi
- The Fermi-LAT high-latitude Survey: Source Count Distributions and the Origin of the Extragalactic Diffuse Background
- The Starburst Contribution to the Extra-Galactic Gamma-Ray Background
- GeV Gamma-Ray Attenuation and the High-Redshift UV Background
- BLAST: the far-infrared/radio correlation in distant galaxies
- The VLA-COSMOS Perspective on the IR-Radio Relation. I. New Constraints on Selection Biases and the Non-Evolution of the IR/Radio Properties of Star Forming and AGN Galaxies at Intermediate and High Redshift
- The Physics of the FIR-Radio Correlation: II. Synchrotron Emission as a Star-Formation Tracer in High-Redshift Galaxies
- Cosmic Gamma-Ray Background from Star-Forming Galaxies
- Extragalactic Zeeman Detections in OH Megamasers
- Nonthermal phenomena in clusters of galaxies
- Sources of the Radio Background Considered