paper

Searching for High-Energy Neutrino Emission from Galaxy Clusters with IceCube

arXiv:2206.02054 · doi:10.3847/2041-8213/ac966b

Abstract

Galaxy clusters have the potential to accelerate cosmic rays (CRs) to ultra-high energies via accretion shocks or embedded CR acceleration sites. CRs with energies below the Hillas condition will be confined within the cluster and will eventually interact with the intracluster medium (ICM) gas to produce secondary neutrinos and rays. Using 9.5 years of muon-neutrino track events from the IceCube Neutrino Observatory, we report the results of a stacking analysis of 1094 galaxy clusters, with masses \(\textup{M}_\odot\) and redshifts between 0.01 and 1, detected by the {\it Planck} mission via the Sunyaev-Zeldovich (SZ) effect. We find no evidence for significant neutrino emission and report upper limits on the cumulative unresolved neutrino flux from massive galaxy clusters after accounting for the completeness of the catalog up to a redshift of 2, assuming three different weighting scenarios for the stacking and three different power-law spectra. Weighting the sources according to mass and distance, we set upper limits at confidence level that constrain the flux of neutrinos from massive galaxy clusters ( \(\textup{M}_\odot\)) to be no more than of the diffuse IceCube observations at 100~TeV, assuming an unbroken power-law spectrum.

12 pages, 3 figures and one table. Updated with accepted version

Searching for High-Energy Neutrino Emission from Galaxy Clusters with IceCube · wovepaper