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Neutrino-photon reactions in astrophysics and cosmology

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abstract

At energies above the threshold for $W$ production the process $\nu \gamma \to l W^+$ is competive with $\nu \nu$ scattering at the same center of mass energies. In a cosmological setting, absorption of ultra high energy neutrinos by the microwave photon background is comparable to absorption by the neutrino background. In passing through matter, the process $\nu \to l W^+$ will occur in the coulomb field of nuclei. For iron, the interaction rate per nucleon is roughly 20% of the charge current cross-section. The related process, $\anti\nu_e e^- \to \gamma W^-$ dominates $\anti\nu_e e^-$ scattering for about a decade in energy above the resonance for $W$ production.

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representative citing papers

Neutrino Physics and Astrophysics at Colliders

hep-ph · 2025-06-25 · unverdicted · novelty 0.0

A review of collider neutrino experiments, covering first FASERv and SND@LHC measurements, FPF prospects for neutrino cross sections, new physics searches, and astrophysics applications.

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  • Neutrino Physics and Astrophysics at Colliders hep-ph · 2025-06-25 · unverdicted · none · ref 76 · internal anchor

    A review of collider neutrino experiments, covering first FASERv and SND@LHC measurements, FPF prospects for neutrino cross sections, new physics searches, and astrophysics applications.