English

Particle Acceleration in Cassiopeia A Revealed by Broadband High-Energy Spectrum

High Energy Astrophysical Phenomena 2026-03-30 v1

Abstract

Recently, the GeV--sub-PeV spectrum of supernova remnant (SNR) Cassiopeia A (Cas A), one of the youngest and most well-studied SNRs in our Galaxy, has been updated by observations of Fermi-LAT and LHAASO. We revisit Cas A with our previous shell-plus-jet asymmetric model and investigate its particle acceleration ability. The broadband fitting results suggest that the double-peaked gamma-ray spectrum can be well attributed to proton-proton (PP) collisions and inverse Compton scattering within the SNR shell, while the synchrotron emission from a jet component with velocity of 0.1c\sim0.1c can account for the hard X-ray emission up to 220 keV. Furthermore, the PP collisions in the jet can produce a sub-PeV emission, but constrained by the LHAASO-KM2A limit to a flux below 1×1014erg/(cm2s)\sim 1\times10^{-14}\rm erg/(cm^2s) at 100 TeV. The energy of accelerated protons in the jet of Cas A could be up to 5×10475\times10^{47} erg, which, assuming that the PeV cosmic ray distribution is clumpy in the Galaxy with the clump size comparable to the thickness of the Galactic plane, derives a proton flux consistent with the observed one at 1 PeV, implying that the Cas A-like SNRs can still be PeVatrons in the Galaxy. It is encouraging for LHAASO and future telescopes to detect or constrain Cas A spectrum above 100-TeV more precisely.

Keywords

Cite

@article{arxiv.2603.26326,
  title  = {Particle Acceleration in Cassiopeia A Revealed by Broadband High-Energy Spectrum},
  author = {Bo-Tao Li and Wei Wang and Zhuo Li},
  journal= {arXiv preprint arXiv:2603.26326},
  year   = {2026}
}

Comments

11 pages, 6 figures, PRD in press