Anomalous distributions of primary cosmic rays as evidence for time-dependent particle acceleration in Supernova remnants
arXiv:1707.00262 · doi:10.3847/2041-8213/aa7de1
Abstract
Recent precise measurements of cosmic ray (CR) spectra show that the energy distribution of protons is softer than those of heavier nuclei, and there are spectral hardenings for all nuclear compositions above 200 GV. Models proposed for these anomalies generally assume steady-state solutions of the particle acceleration process. We show that, if the diffusion coefficient has a weak dependence on the particle rigidity near shock fronts of supernova remnants (SNRs), time-dependent solutions of the linear diffusive shock acceleration at two stages of SNR evolution can naturally account for these anomalies. The high-energy component of CRs is dominated by acceleration in the free expansion and adiabatic phases with enriched heavy elements and a high shock speed. The low energy component may be attributed to acceleration by slow shocks propagating in dense molecular clouds with low metallicity in the radiative phase. Instead of a single power-law distribution, the spectra of time-dependent solutions soften gradually with the increase of energy, which may beresponsible for the "knee" of CRs.
Submitted to ApJL
References in corpus (8)
- Discrepant hardening observed in cosmic-ray elemental spectra
- Cosmic-Ray Proton and Helium Spectra from the First CREAM Flight
- Spectral breaks as a signature of cosmic ray induced turbulence in the Galaxy
- Measurements of cosmic-ray secondary nuclei at high energies with the first flight of the CREAM balloon-borne experiment
- Time-Dependent Stochastic Particle Acceleration in Astrophysical Plasmas: Exact Solutions Including Momentum-Dependent Escape
- Unified model for the gamma-ray emission of supernova remnants
- Evolution of High-Energy Particle Distribution in Mature Shell-Type Supernova Remnants
- Anomalous Galactic Cosmic Rays in the Framework of AMS-02
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