A New Probe of Strongly-Interacting Dark Sector using Neutrino Telescopes
hep-ph, astro-ph.HE
Submitted: 2026-09-21
Updated: 2026-09-21
Comments: 9 pages, 6 figures
License: http://creativecommons.org/licenses/by/4.0/
The gist: A confining dark sector modeled after quantum chromodynamics provides a well-motivated framework for strongly-interacting dark matter.
Terminology
Abstract
A confining dark sector modeled after quantum chromodynamics provides a well-motivated framework for strongly-interacting dark matter. We show that dark vector mesons in a confining dark sector can be resonantly produced in high-energy neutrino scattering on the cosmic neutrino background, generating a distinctive absorption feature in the cosmic neutrino energy spectrum. Unlike conventional attenuation effects, this feature directly reflects the mass spectrum of dark resonances and can therefore serve as a spectroscopic signature of a strongly-interacting dark sector. We find that a broad range of dark-sector parameter space is within the reach of future neutrino telescopes, including IceCube-Gen2 Radio. Our proposal thus turns the cosmic neutrino background into a target for discovering dark-sector resonances, while simultaneously providing a novel probe of dark sector interactions with neutrinos.
Sources
- A New Era in the Quest for Dark Matter
- The SIMPlest Miracle
- Twin SIMPs
- Resolving phenomenological problems with strongly-interacting-massive-particle models with dark vector resonances
- Hidden strongly interacting massive particles
- Strongly interacting dark sectors in the early Universe and at the LHC through a simplified portal
- Split SIMPs with Decays
- Dark matter relic density in strongly interacting dark sectors with light vector mesons
- SIMPly add a dark photon
- Low energy effective theories of composite dark matter with real representations
- Even SIMP miracles are possible
- Topological Portal to the Dark Sector
- Strongly interacting singlet scalar dark matter during reheating
- Dark atoms and composite dark matter
- Theory, phenomenology, and experimental avenues for dark showers: a Snowmass 2021 report
- Rich Phenomenology from Simple Ingredients: A Review of Confining Dark Sectors
- Communication with SIMP dark mesons via Z'-portal
- Dark Spectroscopy
- Cosmology and Accelerator Tests of Strongly Interacting Dark Matter
- Sub-GeV dark matter and multi-decay signatures from dark showers at beam-dump experiments
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