Pith. sign in

Explaining the PeV Neutrino Fluxes at KM3NeT and IceCube with Quasiextremal Primor- dial Black Holes,

4 Pith papers cite this work. Polarity classification is still indexing.

4 Pith papers citing it

citation-role summary

background 1 method 1

citation-polarity summary

years

2026 4

verdicts

UNVERDICTED 4

representative citing papers

Electromagnetic Signatures From Primordial Black Holes in the Solar System

hep-ph · 2026-05-25 · unverdicted · novelty 5.0 · 2 refs

Calculations indicate AMEGO-X could detect PBH transits within 0.1 AU while HAWC and LHAASO could observe explosions out to 0.1-0.5 pc, with future events at ~1000 AU potentially producing measurable electromagnetic signals unlike the 2023 KM3NeT neutrino candidate.

Testing Heavy Dark Matter Decay as the Origin of KM3-230213A

hep-ex · 2026-06-08 · unverdicted · novelty 4.0

Assuming the KM3-230213A event comes from heavy dark matter decay, the preferred mass exceeds 100 PeV at 95% CL with lifetimes of 10^26-10^27 s, but these regions conflict with bounds from other neutrino telescopes and gamma-ray observations.

citing papers explorer

Showing 4 of 4 citing papers.

  • Gravitational Waves from Black Hole Reheating: The Scalar-Induced Component hep-ph · 2026-05-20 · unverdicted · none · ref 180

    Accounting for the minimal mass spread of primordial black holes from gravitational collapse suppresses the Poltergeist GW background to the level of generic scalar-induced signals and reopens ultra-light PBH parameter space.

  • High-energy neutrino constraints on primordial black holes as dark matter astro-ph.HE · 2026-04-10 · unverdicted · none · ref 35

    High-energy neutrino telescopes constrain sub-asteroid mass primordial black holes with extended mass functions as dark matter, yielding limits slightly weaker than but independent of gamma-ray bounds.

  • Electromagnetic Signatures From Primordial Black Holes in the Solar System hep-ph · 2026-05-25 · unverdicted · none · ref 29 · 2 links

    Calculations indicate AMEGO-X could detect PBH transits within 0.1 AU while HAWC and LHAASO could observe explosions out to 0.1-0.5 pc, with future events at ~1000 AU potentially producing measurable electromagnetic signals unlike the 2023 KM3NeT neutrino candidate.

  • Testing Heavy Dark Matter Decay as the Origin of KM3-230213A hep-ex · 2026-06-08 · unverdicted · none · ref 47

    Assuming the KM3-230213A event comes from heavy dark matter decay, the preferred mass exceeds 100 PeV at 95% CL with lifetimes of 10^26-10^27 s, but these regions conflict with bounds from other neutrino telescopes and gamma-ray observations.