Diffuse neutrino flux from coronal magnetospheric current sheets of accreting black holes

Fuente: arXiv
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Main Authors: Karavola, Despina, Petropoulou, Maria, Fiorillo, Damiano F. G., Comisso, Luca, Sironi, Lorenzo
Format: Preprint
Published: 2025
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_version_ 1866910210114715648
author Karavola, Despina
Petropoulou, Maria
Fiorillo, Damiano F. G.
Comisso, Luca
Sironi, Lorenzo
author_facet Karavola, Despina
Petropoulou, Maria
Fiorillo, Damiano F. G.
Comisso, Luca
Sironi, Lorenzo
contents Non-jetted AGN exhibit hard X-ray emission with a power law spectrum above $\sim$2 keV, which is thought to be produced through Comptonization of soft photons by electrons and positrons (pairs) in the vicinity of the black hole. The origin and composition of this plasma source, known as the corona, is a matter open for debate. Our study focuses on the role of relativistic protons accelerated in black-hole magnetospheric current sheets in the neutrino production of AGN coronae. We present a model that has two free parameters, namely the proton plasma magnetization $σ_{\rm p}$, which controls the peak energy of the neutrino spectrum, and the Eddington ratio $λ_{\rm Edd}$ (defined as the ratio between X-ray luminosity $L_{\rm X}$ and Eddington luminosity $L_{\rm Edd}$), which controls the amount of energy transferred to secondary particles. Furthermore, we combine our coronal model with an AGN population in order to provide a prediction for the diffuse neutrino flux measured on Earth. We compare our results with the observational data by IceCube and we find a satisfactory agreement on both the flux value and the slope of the neutrino distribution when we assume a $σ_{\rm p}$ value of $10^5$ for all the sources in our sample.
format Preprint
id arxiv_https___arxiv_org_abs_2510_00648
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Diffuse neutrino flux from coronal magnetospheric current sheets of accreting black holes
Karavola, Despina
Petropoulou, Maria
Fiorillo, Damiano F. G.
Comisso, Luca
Sironi, Lorenzo
High Energy Astrophysical Phenomena
Non-jetted AGN exhibit hard X-ray emission with a power law spectrum above $\sim$2 keV, which is thought to be produced through Comptonization of soft photons by electrons and positrons (pairs) in the vicinity of the black hole. The origin and composition of this plasma source, known as the corona, is a matter open for debate. Our study focuses on the role of relativistic protons accelerated in black-hole magnetospheric current sheets in the neutrino production of AGN coronae. We present a model that has two free parameters, namely the proton plasma magnetization $σ_{\rm p}$, which controls the peak energy of the neutrino spectrum, and the Eddington ratio $λ_{\rm Edd}$ (defined as the ratio between X-ray luminosity $L_{\rm X}$ and Eddington luminosity $L_{\rm Edd}$), which controls the amount of energy transferred to secondary particles. Furthermore, we combine our coronal model with an AGN population in order to provide a prediction for the diffuse neutrino flux measured on Earth. We compare our results with the observational data by IceCube and we find a satisfactory agreement on both the flux value and the slope of the neutrino distribution when we assume a $σ_{\rm p}$ value of $10^5$ for all the sources in our sample.
title Diffuse neutrino flux from coronal magnetospheric current sheets of accreting black holes
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2510.00648