Cosmic Ray Spectrum Steepening in Supernova Remnants -- I. Loss-Free Self-Similar Solution
arXiv:1901.01284 · doi:10.3847/1538-4357/ab2c01
Abstract
The direct measurements of cosmic rays (CRs), after correction for the propagation effects in the interstellar medium, indicate that their source spectra are likely to be significantly steeper than the canonical spectrum predicted by the standard Diffusive Shock Acceleration (DSA) mechanism. The DSA has long been held responsible for the production of galactic CRs in supernova remnant (SNR) shocks. The -ray 'probes' of the acceleration spectra of CRs on-the-spot, inside of the SNRs, lead to the same conclusion. We show that the steep acceleration spectrum can be attributed to the of (i) spherical expansion, (ii) tilting of the magnetic field along the shock surface and (iii) shock deceleration. Because of (i) and (ii), the DSA is efficient only on two ``polar caps'' of a spherical shock where the local magnetic field is within to its normal. The shock-produced spectrum observed edge-on steepens with the particle energy because the number of freshly accelerated particles with lower energies continually adds up to a growing acceleration region. We demonstrate the steepening effect by obtaining an exact self-similar solution for the particle acceleration at expanding shock surface with an arbitrary energy dependence of particle diffusivity . We show that its increase toward higher energy steepens the spectrum, which deeply contrasts with the standard DSA spectrum where cancels out.
18 pages, 9 figures, to Appear in ApJ
References in corpus (7)
- Variation of cosmic ray injection across supernova shocks
- Cosmic ray acceleration by shocks: spectral steepening due to turbulent magnetic field amplification
- The effect of cosmic-ray acceleration on supernova blast wave dynamics
- An Exact Solution of the Fokker-Planck Equation for Isotropic Scattering
- When disorder looks like order: a new model to explain radial magnetic fields in young supernova remnants
- Acceleration of Cosmic Rays in Supernova Shocks: elemental selectivity of the injection mechanism
- Practical aspects of X-ray imaging polarimetry of supernova remnants and other extended sources
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