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Two Kinds of Galactic Source Populations Could Explain Cosmic-Ray Observations up to the “Knee” Region

  • Furong Li*
  • , Wei Liu
  • , Yali Shao
  • , Yi Qing Guo
  • *Corresponding author for this work
  • Beihang University
  • CAS - Institute of High Energy Physics
  • University of Chinese Academy of Sciences

Research output: Contribution to journalArticlepeer-review

Abstract

Observations of diffuse gamma rays above hundreds of TeV from the Galactic disk provide strong evidence for the existence of PeV cosmic-ray accelerators—so-called PeVatrons—in the Galaxy. However, mounting observations have ruled out most supernova remnants as likely PeVatron candidates, suggesting instead that multiple populations of cosmic-ray sources exist in the Galaxy. Recently, the LHAASO collaboration reported the detection of ultrahigh-energy gamma rays from microquasars, establishing that the black holes in these systems, which accrete matter from companion stars, are powerful PeV particle accelerators. In this work, we propose a two-component source model to explain the observed cosmic-ray spectra and composition up to the PeV range. Below approximately 100 TeV, supernova remnants serve as the dominant sources; above this energy, microquasars are considered the primary candidate population. Within this scenario, the assumption of a charge-dependent cutoff well accounts for the latest measurements, including the proton and helium spectra up to the PeV range, the energy-dependent composition, and the all-particle spectrum. In contrast, the nuclei-dependent cutoff hypothesis is ruled out by the data.

Original languageEnglish
Article number187
JournalAstrophysical Journal
Volume1004
Issue number2
DOIs
StatePublished - 20 Jun 2026

Keywords

  • Galactic cosmic rays (567)
  • High energy astrophysics (739)
  • Particle astrophysics (96)

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