High-energy Neutrino Emission from NGC 1068 by Outflow-cloud Interactions

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Hauptverfasser: Huang, Yong-Han, Wang, Kai, Ma, Zhi-Peng
Format: Preprint
Veröffentlicht: 2024
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author Huang, Yong-Han
Wang, Kai
Ma, Zhi-Peng
author_facet Huang, Yong-Han
Wang, Kai
Ma, Zhi-Peng
contents As the hottest high-energy neutrino spot, NGC 1068 has received much attention in recent years. Here we focus on the central region of the active galactic nuclei (AGN) and propose an outflow-cloud interaction model that could probably explain the observed neutrino data. Considering the accretion process adjacent to the central supermassive black hole (SMBH) of NGC 1068, strong outflows will be generated, which will likely interact with surrounding clouds floating in the corona region. Particles carried by the outflow will be accelerated to very high energy by the shocks forming during the outflow-cloud interactions. For the accelerated high-energy protons, $pγ$ interactions with the background photon field of the corona and disk and $pp$ interaction with the surrounding gas will produce considerable high-energy $γ$-rays and neutrino. However, because of the extremely dense photon fields in the corona and disk, the newly generated $γ$-rays will be significantly attenuated through the $γγ$ absorptions. In our scenario, the expected GeV-TeV $γ$-ray emission will be suppressed to a much lower level than the neutrino emission, consistent with the observational characteristics of NGC 1068, while the generated 1-30\,TeV neutrino flux can fit the IceCube data very well.
format Preprint
id arxiv_https___arxiv_org_abs_2406_14001
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle High-energy Neutrino Emission from NGC 1068 by Outflow-cloud Interactions
Huang, Yong-Han
Wang, Kai
Ma, Zhi-Peng
High Energy Astrophysical Phenomena
High Energy Physics - Phenomenology
As the hottest high-energy neutrino spot, NGC 1068 has received much attention in recent years. Here we focus on the central region of the active galactic nuclei (AGN) and propose an outflow-cloud interaction model that could probably explain the observed neutrino data. Considering the accretion process adjacent to the central supermassive black hole (SMBH) of NGC 1068, strong outflows will be generated, which will likely interact with surrounding clouds floating in the corona region. Particles carried by the outflow will be accelerated to very high energy by the shocks forming during the outflow-cloud interactions. For the accelerated high-energy protons, $pγ$ interactions with the background photon field of the corona and disk and $pp$ interaction with the surrounding gas will produce considerable high-energy $γ$-rays and neutrino. However, because of the extremely dense photon fields in the corona and disk, the newly generated $γ$-rays will be significantly attenuated through the $γγ$ absorptions. In our scenario, the expected GeV-TeV $γ$-ray emission will be suppressed to a much lower level than the neutrino emission, consistent with the observational characteristics of NGC 1068, while the generated 1-30\,TeV neutrino flux can fit the IceCube data very well.
title High-energy Neutrino Emission from NGC 1068 by Outflow-cloud Interactions
topic High Energy Astrophysical Phenomena
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2406.14001