Evolution of High-Energy Particle Distribution in Mature Shell-Type Supernova Remnants
arXiv:1611.07564 · doi:10.3847/1538-4357/834/2/153
Abstract
Multi-wavelength observations of mature supernova remnants (SNRs), especially with recent advances in gamma-ray astronomy, make it possible to constrain energy distribution of energetic particles within these remnants. In consideration of the SNR origin of Galactic cosmic rays and physics related to particle acceleration and radiative processes, we use a simple one-zone model to fit the nonthermal emission spectra of three shell-type SNRs located within 2 degrees on the sky: RX J1713.7-3946, CTB 37B, and CTB 37A. Although radio images of these three sources all show a shell (or half-shell) structure, their radio, X-ray, and gamma-ray spectra are quite different, offering an ideal case to explore evolution of energetic particle distribution in SNRs. Our spectral fitting shows that 1) the particle distribution becomes harder with aging of these SNRs, implying a continuous acceleration process, and the particle distributions of CTB 37A and CTB 37B in the GeV range are harder than the hardest distribution that can be produced at a shock via the linear diffusive shock particle acceleration process, so spatial transport may play a role; 2) the energy loss timescale of electrons at the high-energy cutoff due to synchrotron radiation appears to be always a bit (within a factor of a few) shorter than the age of the corresponding remnant, which also requires continuous particle acceleration; 3) double power-law distributions are needed to fit the spectra of CTB 37B and CTB 37A, which may be attributed to shock interaction with molecular clouds.
Accepted for publication in The Astrophysical Journal, 11 pages, 3 figures, 1 table
References in corpus (11)
- Detection of the Characteristic Pion-Decay Signature in Supernova Remnants
- Parameterization of Gamma, e^+/- and Neutrino Spectra Produced by p-p Interaction in Astronomical Environment
- Inverse Compton Emission from Galactic Supernova Remnants: Effect of the Interstellar Radiation Field
- Study of Nonthermal Emission from SNR RX J1713.7-3946 with Suzaku
- Hadronic gamma-rays from RX J1713.7-3946?
- Unified model for the gamma-ray emission of supernova remnants
- Modeling the Multi-Wavelength Emission of Shell-Type Supernova Remnant RX J1713.7-3946
- Stochastic Electron Acceleration in Shell-Type Supernova Remnants II
- H.E.S.S. detection of TeV emission from the interaction region between the supernova remnant G349.7+0.2 and a molecular cloud
- Analysis of GeV-band gamma-ray emission from SNR RX J1713.7-3946
- Fermi Large Area Telescope observations of the supernova remnant HESS J1731-347
Cited by in corpus (5)
- Magnetic field amplification in supernova remnants
- Anomalous distributions of primary cosmic rays as evidence for time-dependent particle acceleration in Supernova remnants
- Detection of GeV -ray emission in the direction of HESS J1731-347 with Fermi-LAT
- Fermi-LAT Detection of GeV Gamma-Ray Emission from The Highly Asymmetric Shell Supernova Remnant: SNR G317.3-0.2
- Multiwavelength study of non-thermal emission in the Swift J1834.9-0846/W41 region