English

Spectrum and location of ongoing extreme particle acceleration in Cassiopeia A

High Energy Astrophysical Phenomena 2024-11-28 v2

Abstract

Young supernova remnants (SNRs) are believed to be the origin of energetic cosmic rays (CRs) below the "knee" of their spectrum at 3\sim3 petaelectronvolt (PeV, 101510^{15} eV). Nevertheless, the precise location, duration, and operation of CR acceleration in young SNRs are open questions. Here, we report on multi-epoch X-ray observations of Cassiopeia A (Cas A), a 350-year-old SNR, in the 15-50 keV band that probes the most energetic CR electrons. The observed X-ray flux decrease (15±1%)(15\pm1\%), contrary to the expected >>90\% decrease based on previous radio, X-ray, and gamma-ray observations, provides unambiguous evidence for CR electron acceleration operating in Cas A. A temporal model for the radio and X-ray data accounting for electron cooling and continuous injection finds that the freshly injected electron spectrum is significantly harder (exponential cutoff power law index q=2.15q=2.15), and its cutoff energy is much higher (Ecut=36E_{cut}=36 TeV) than the relic electron spectrum (q=2.44±0.03q=2.44\pm0.03, Ecut=4±1E_{cut}=4\pm1 TeV). Both electron spectra are naturally explained by the recently developed modified nonlinear diffusive shock acceleration (mNLDSA) mechanism. The CR protons producing the observed gamma rays are likely accelerated at the same location by the same mechanism as those for the injected electron. The Cas A observations and spectral modeling represent the first time radio, X-ray, gamma ray and CR spectra have been self-consistently tied to a specific acceleration mechanism -- mNLDSA -- in a young SNR.

Keywords

Cite

@article{arxiv.2410.16522,
  title  = {Spectrum and location of ongoing extreme particle acceleration in Cassiopeia A},
  author = {Jooyun Woo and Kaya Mori and Charles J. Hailey and Elizabeth Spira-Savett and Aya Bamba and Brian W. Grefenstette and Thomas B. Humensky and Reshmi Mukherjee and Samar Safi-Harb and Tea Temim and Naomi Tsuji},
  journal= {arXiv preprint arXiv:2410.16522},
  year   = {2024}
}

Comments

Accepted for publication in ApJ. 14 pages, 4 figures, 2 tables