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◇ arXiv2026-08-27· astro-ph.HE

Anisotropy-driven constraints on the transition from Galactic to extragalactic cosmic-ray sources

Teresa Bister, Foteini Oikonomou, Damiano F. G. Fiorillo

原始摘要(英文原文)· Original abstract
The spatial distribution of the cosmic-ray (CR) flux above $8\,\mathrm{EeV}$ exhibits a significant dipole in agreement with expectations from extragalactic sources following the large-scale structure. At the ankle, the direction changes suddenly and is compatible with the Galactic center for energies $\lesssim4\,\mathrm{EeV}$. We leverage the direction and strength of the dipole anisotropy as diagnostics of the possible sources of the intermediate-mass nuclei below the ankle that cannot be associated with the continuation of the Peters cycle of lower-energy Galactic CRs. Using 3D-simulations of CR propagation in up-to-date Galactic magnetic field models, we show that the dipole anisotropy of both continuous and transient individual Galactic sources and source distributions exceeds the measurements by $>3σ$. An extragalactic origin of the intermediate nuclei below the ankle instead agrees with all data, where the observed change in dipole direction is guided by the fading heavy Galactic component dominant at the second knee.
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Anisotropy-driven constraints on the transition from Galactic to extragalactic cosmic-ray sources — 科研速览 Science Skim