Neutron star accretion events in AGN discs: mutimessenger implications

Author:

Zhang Shu-Rui123,Yuan Ye-Fei12ORCID,Wang Jian-Min4,Ho Luis C56

Affiliation:

1. School of Astronomy and Space Science, University of Science and Technology of China , Hefei 230026 , China

2. CAS Key Laboratory for Research in Galaxies and Cosmology, Department of Astronomy, University of Science and Technology of China , Hefei 230026 , China

3. Department of Physics and Earth Science, University of Ferrara , Via Saragat 1, I-44122 Ferrara , Italy

4. Key Laboratory for Particle Astrophysics, Institute of High Energy Physics, Chinese Academy of Sciences , 19B Yuquan Road, Beijing 100049 , China

5. Kavli Institute for Astronomy and Astrophysics, Peking University , Beijing 100871 , China

6. Department of Astronomy, School of Physics, Peking University , Beijing 100871 , China

Abstract

ABSTRACT This paper investigates the accretion of neutron stars (NSs) in active galactic nucleus (AGN) accretion discs. We classify potential accretion modes of NSs in AGN discs, proposing a hierarchical model of NS accretion: accretion flow from the Bondi sphere to accretion columns. The accretion of NSs in AGN discs differs from that of BHs, especially within the scale of the NS’s magnetosphere due to its hard surface and magnetic field. As the accretion flow approaches the magnetosphere, the magnetic fields guide the accretion flow to form accretion columns, primarily dominated by neutrinos. While neutrinos generated from single NS accretion may not have observable effects, considering the all-sky background, they contribute to the neutrino background in the sub-MeV energy range comparable to that of supernova explosions. NS accretion may also lead to the generation of mass quadrupole moments, consequently generating gravitational waves (GWs). The GWs, which exhibit characteristic effects like periodic modulations and echoes, could be observed by third-generation GW detectors. The emission of neutrinos and GWs carries away energy and angular momentum brought by accretion, reducing the feedback effect on the AGN disc. This results in an exceptionally high NS accretion rate, leading to a collapse time-scale shorter than the migration-merge time-scale, making it less likely that binary NS mergers originate from AGN discs.

Funder

National Natural Science Foundation of China

Chinese Academy of Sciences

National Key Research and Development Program of China

China Scholarship Council

Publisher

Oxford University Press (OUP)

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1. Correction to: Neutron star accretion events in AGN discs: mutimessenger implications;Monthly Notices of the Royal Astronomical Society;2024-07-27

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