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Cosmic-ray deuteron excess from a primary component

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arxiv 2409.07139 v2 pith:BB4J24K3 submitted 2024-09-11 astro-ph.HE hep-ph

classification astro-ph.HEhep-ph
keywords deuterondeuteronsprimarymeasurementsams-02componentcosmic-raycross
verification ladder T0 review T1 audit T2 compute T3 formal
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The recent AMS-02 measurements of cosmic-ray (CR) deuteron fluxes suggest the presence of primary deuterons in quantities far exceeding predictions from Big Bang nucleosynthesis. This poses a significant challenge to modern astrophysics, as no known processes can account for such large amounts of deuterons without violating existing constraints~\cite{Epstein:1976hq}. In contrast, it is recently proposed that the AMS-02 measurements can be explained by a purely secondary origin when contributions from heavier nuclei are considered. In this study, we recalculate the secondary deuteron flux using production cross sections updated with the latest collider data. We find that some of the deuteron production cross sections are overestimated in the widely-used calculation tools for CR propagation, and a primary deuteron component is still necessary. We then propose a novel process for generating primary deuterons at CR sources through a fusion mechanism, which is naturally unique to deuterons. This model could explain the observed deuteron excess while maintaining consistency with other CR measurements.

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  1. Prediction of lithium isotope fluxes using data-driven production cross sections

    astro-ph.HE 2025-02 conditional novelty 5.0 of 10

    Adding heavy-progenitor lithium production with cross sections renormalized to measurements removes the AMS-02 lithium excess and predicts 6Li and 7Li fluxes consistent with preliminary data.

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