Particle Acceleration in Cassiopeia A Revealed by Broadband High-Energy Spectrum
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 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 at 100 TeV. The energy of accelerated protons in the jet of Cas A could be up to 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