Measurement of the Hubble constant with high-energy neutrinos
Gonzalo Herrera, Nicholas Kamp, Carlos A. Argüelles
astro-ph.CO, astro-ph.HE, hep-ex, hep-ph
Submitted: 2026-08-02
Comments: 5+18 pages, 2+6 figures
Code: https://github.com/icecube/skyllh
License: http://creativecommons.org/licenses/by/4.0/
The gist: Measuring distances in the Universe is one of the hardest problems in physics and astronomy.
Terminology
Abstract
Measuring distances in the Universe is one of the hardest problems in physics and astronomy. Almost every distance probe relies on photons, whose propagation across cosmic distances introduces extinction, absorption, scattering, and radiative-transfer effects. Neutrinos suffer none of these and propagate unattenuated through dust, intergalactic medium, and dense source environments alike. We introduce a new distance-ladder method for measuring the Hubble constant H 0 using high-energy astrophysical neutrinos from point sources as standardizable candles, and report its first observational realization. Using 12 X-ray-selected Seyfert galaxies for which IceCube reports significant per-source neutrino excesses in its 14-year public point-source release, we exploit the disk-corona correlation L nu = kappa, L X beta between neutrino and X-ray luminosities to construct a neutrino distance ladder anchored by non-redshift distances to NGC 1068 (Cepheid + TRGB). We find H 0 = 49+40-30, km,s-1,Mpc-1 and beta = 0.67+0.16-0.25 (68% credible intervals), with the corona slope disfavoring the calorimetric limit beta = 1 at about 2 sigma. The result is consistent with existing H 0 determinations from Planck and SH0ES within 1 sigma. While the uncertainty on H 0 is large, the measurement is free of electromagnetic propagation systematics and demonstrates the viability of neutrinos as a novel cosmographical probe.
Sources
- Planck 2018 results. VI. Cosmological parameters
- A Comprehensive Measurement of the Local Value of the Hubble Constant with 1 km/s/Mpc Uncertainty from the Hubble Space Telescope and the SH0ES Team
- TDCOSMO IV: Hierarchical time-delay cosmography -- joint inference of the Hubble constant and galaxy density profiles
- Constraints on the cosmic expansion history from GWTC-3
- IceCube-Gen2: The Window to the Extreme Universe
- Evidence for neutrino emission from the nearby active galaxy NGC 1068
- Evidence for Neutrino Emission from X-Ray-bright Active Galactic Nuclei with IceCube
- A Note on High Energy Neutrinos from AGN Cores
- Hidden Cores of Active Galactic Nuclei as the Origin of Medium-Energy Neutrinos: Critical Tests with the MeV Gamma-Ray Connection
- High-Energy Neutrinos from Magnetized Coronae of Active Galactic Nuclei and Prospects for Identification of Seyfert Galaxies and Quasars in Neutrino Telescopes
- Cepheid-based Distances to NGC 4303 and NGC 1068
- High Energy Neutrinos from Cosmological Gamma-Ray Burst Fireballs
- On high-energy particles in accretion disk coronae of supermassive black holes: implications for MeV gamma rays and high-energy neutrinos from AGN cores
- Search for neutrino emission from hard X-ray AGN with IceCube
- Extending SkyLLH software for neutrino point source analyses with 10 years of IceCube public data
- BASS XXII: The BASS DR2 AGN Catalog and Data
- The 70 Month Swift-BAT All-Sky Hard X-Ray Survey
- NuSTAR Spectroscopy of Multi-Component X-ray Reflection from NGC 1068
- On the Apparent Correlation between X-ray and Neutrino Luminosities of Active Galactic Nuclei
- The Pantheon+ Analysis: Improving the Redshifts and Peculiar Velocities of Type Ia Supernovae Used in Cosmological Analyses
Related papers
- Angular clustering and bias of photometric quasars in the Kilo-Degree Survey Data Release 4
- A Novel kinetic Sunyaev-Zel'dovich Estimator for Electron-Electron Correlations
- Magnetic fields at the dawn of structure formation I. The CARLA J1510+5958 proto-cluster
- Dark Energy Survey Year 6 Results: Weak Lensing and Galaxy Clustering Cosmological Analysis Framework
- Exploring the Impact of Systematic Bias in Type Ia Supernova Cosmology Across Diverse Dark Energy Parametrizations
- Non-Gaussian Galaxy Stochasticity and the Noise-Field Formulation