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TeV Gamma Rays Expected from Supernova Remnants in Different Uniform Interstellar Media

Astrophysics 2009-10-31 v1

Abstract

Calculations of the expected TeV γ\gamma-ray emission, produced by accelerated cosmic rays (CRs) in nuclear collisions, from supernova remnants evolving in a uniform interstellar medium (ISM) are presented. The aim is to study the sensitivity of γ\gamma-ray production to a physical parameter set. Apart from its general proportionality to N_H, it is shown that the γ\gamma-ray production essentially depends upon the ratio of the CR diffusion coefficient κ\kappa to a critical value κcrit=10(B0/5μG)(NH/0.3cm3)1/3κB\kappa_{crit}=10(B_0/5 \mu{G})(N_H/0.3 {cm}^{-3})^{-1/3}\kappa_B, where B_0 and N_H are the magnetic field and hydrogen number density of the ISM, and κB\kappa_B denotes the Bohm diffusion coefficient. If κ\kappa is of the same order or lower than κcrit\kappa_{crit}, then the peak TeV γ\gamma-ray flux in the Sedov evolutionary phase, normalized to a distance of 1 kpc, is about 10^{-10}(N_H/0.3 {cm}^{-3}) photons cm^{-2} s^{-1}. For a CR diffusion coefficient that is significantly larger than κcrit\kappa_{crit}, the CR cutoff energy is less than 10 TeV and the expected γ\gamma-ray flux at 1 TeV is considerably below the presently detectable level of 10^{-12} photons cm^{-2} s^{-1}. The same is of course true for a SNR in the rarified, so-called hot ISM.

Keywords

Cite

@article{arxiv.astro-ph/0004354,
  title  = {TeV Gamma Rays Expected from Supernova Remnants in Different Uniform Interstellar Media},
  author = {Evgeny G. Berezhko and Heinrich J. Voelk},
  journal= {arXiv preprint arXiv:astro-ph/0004354},
  year   = {2009}
}

Comments

9 pages, 2 figures, to appear in Astroparticle Physics