Dark-Matter-Enhanced Probe of Relic Neutrino Clustering
Abstract
We propose heavy decaying dark matter (DM) as a new probe of the cosmic neutrino background (CB). Heavy DM, with mass GeV, decaying into neutrinos can be a new source of ultrahigh-energy (UHE) neutrinos. Including this contribution along with the measured astrophysical and predicted cosmogenic neutrino fluxes, we study the scattering of UHE neutrinos with the CB via standard weak interactions mediated by the boson. We solve the complete neutrino transport equation, taking into account both absorption and reinjection effects, to calculate the expected spectrum of UHE neutrino flux at future neutrino telescopes, such as the IceCube-Gen2 radio. We argue that such observations can be used to probe the CB properties and, in particular, local CB clustering. We find that, depending on the absolute neutrino mass and the DM mass and lifetime, a local CB overdensity can be probed at the IceCube-Gen2 radio within ten years of data taking.
Keywords
Cite
@article{arxiv.2508.21034,
title = {Dark-Matter-Enhanced Probe of Relic Neutrino Clustering},
author = {Writasree Maitra and Anna M. Suliga and Vedran Brdar and P. S. Bhupal Dev},
journal= {arXiv preprint arXiv:2508.21034},
year = {2026}
}
Comments
11 pages, 5 figures; version to appear in Phys. Rev. D