Searching for galactic cosmic ray pevatrons with multi-TeV gamma rays and neutrinos
arXiv:0705.3011 · doi:10.1086/521047
Abstract
The recent HESS detections of supernova remnant shells in TeV gamma-rays confirm the theoretical predictions that supernova remnants can operate as powerful cosmic ray accelerators. If these objects are responsible for the bulk of galactic cosmic rays, then they should accelerate protons and nuclei to 10^15 eV and beyond, i.e. act as cosmic PeVatrons. The model of diffusive shock acceleration allows, under certain conditions, acceleration of particles to such high energies and their gradual injection into the interstellar medium, mainly during the Sedov phase of the remnant evolution. The most energetic particles are released first, while particles of lower energies are more effectively confined in the shell, and are released at later epochs. Thus the spectrum of nonthermal paticles inside the shell extends to PeV energies only during a relatively short period of the evolution of the remnant. For this reason one may expect spectra of secondary gamma-rays and neutrinos extending to energies beyond 10 TeV only from T \lesssim 1000 yr old supernova remnants. On the other hand, if by a chance a massive gas cloud appears in the \lesssim 100 pc vicinity of the supernova remnant, ``delayed'' multi-TeV signals of gamma-rays and neutrinos arise when the most energetic partices emerged from the supernova shell reach the cloud. The detection of such delayed emission of multi-TeV gamma-rays and neutrinos allows indirect identification of the supernova remnant as a particle PeVatron.
ApJ Letters, in press. Reference to recent MILAGRO results added
References in corpus (6)
- Primary particle acceleration above 100 TeV in the shell-type Supernova Remnant RX J1713.7-3946 with deep H.E.S.S. observations
- Gamma rays from molecular clouds
- Nonlinear Diffusive Shock Acceleration with Magnetic Field Amplification
- The maximum momentum of particles accelerated at cosmic ray modified shocks
- Expected neutrino signal from supernova remnant RX J1713.7-3946 and flavor oscillations
- Cosmic Neutrinos from the Sources of Galactic and Extragalactic Cosmic Rays
Cited by in corpus (6)
- Study of Nonthermal Emission from SNR RX J1713.7-3946 with Suzaku
- Exploring a SNR/Molecular Cloud Association Within HESS J1745-303
- Prospects for identifying the sources of the Galactic cosmic rays with IceCube
- MAGIC J0616+225 as delayed TeV emission of cosmic-rays diffusing from SNR IC 443
- 3-D Model of Broadband Emission from Supernova Remnants Undergoing Non-linear Diffusive Shock Acceleration
- Kinetic approaches to particle acceleration at cosmic ray modified shocks