Rare Transients in Nearby Galaxies Explain Ultra-high-energy Cosmic Rays
Abstract
The origin of ultra-high-energy cosmic rays remains one of the central open questions in astroparticle physics. Recent measurements reveal anisotropies in arrival directions, a rigidity-dependent composition dominated by intermediate-mass nuclei, and striking hemispheric differences in the energy spectra. Here we show that \emph{rare transients in nearby galaxies} can naturally account for these features. In our fiducial neutron-star merger model, the cosmic ray flux above ~EeV is dominated by ten nearby galaxies within Mpc. This accounts for the observed hotspots: seven of the ten brightest galaxies coincide with reported excess regions, a chance probability of . Nearby transients can also explain the spectral excess of TA over Auger and modify the rigidity--aligned succession of isotopes.
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Cite
@article{arxiv.2510.06193,
title = {Rare Transients in Nearby Galaxies Explain Ultra-high-energy Cosmic Rays},
author = {Imre Bartos and Marek Kowalski},
journal= {arXiv preprint arXiv:2510.06193},
year = {2025}
}
Comments
8 pages, 4 figures