19–23 Oct 2026
Lanthieri Mansion, Vipava
Europe/Ljubljana timezone

High-energy Multi-messenger Emission from Galaxy Clusters in the Local Universe

23 Oct 2026, 12:15
15m
Lanthieri Mansion, Vipava

Lanthieri Mansion, Vipava

Glavni trg 8, Vipava, SI 5271, Slovenia

Speaker

Saqib Hussain (Center for Astrophysics and Cosmology, University of Nova Gorica, Slovenia)

Description

In this work, we investigate the diffuse $\gamma-$ray and neutrino emission from the Virgo, Perseus, and Coma clusters using a detailed numerical method, combining MHD simulations with Monte Carlo methods. The MHD simulation provides the distributions of temperature, gas, and magnetic field in clusters. The Monte Carlo simulations are used to investigate the cosmic-ray (CR) propagation in ICM and subsequently the secondaries stemming from CRs. Our primary assumption is that CR injection scales with the gas density of clusters, providing a physically motivated approximation. High-density regions in clusters are associated with strong turbulence and prominent shock structures, making them natural sites for efficient CR acceleration. Our predicted $\gamma-$ray flux from the individual clusters lies well below the present LHAASO upper limits. The MAGIC observations of the central source NGC~$1275$ of the Perseus cluster are significantly higher than our results. Further, we estimated the cumulative $\gamma$-ray and neutrino fluxes from clusters with masses $\gtrsim 5\times 10^{13}\, M_{\odot}$ in the local Universe (within $500$~Mpc). The diffuse $\gamma-$ray flux reported by the Fermi-LAT collaboration is significantly higher than our results. Our predictions are consistent with IceCube’s existing upper limits on the unresolved neutrino flux from galaxy clusters ($M > 10^{14}\, M_{\odot}$) up to $z = 2$.

Authors

Prof. Gabrijela Zaharijas (University of Nova Gorica, Slovenia) Saqib Hussain (Center for Astrophysics and Cosmology, University of Nova Gorica, Slovenia)

Presentation materials

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