Accretion onto Reissner-Nordström naked singularities

Fuente: arXiv
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Autores principales: Krajewski, Tomasz, Kluźniak, Włodek
Formato: Preprint
Publicado: 2025
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author Krajewski, Tomasz
Kluźniak, Włodek
author_facet Krajewski, Tomasz
Kluźniak, Włodek
contents Nearly every galactic core contains a supermassive compact object, hypothesized to be a Kerr black hole. It was only with the advent of Event Horizon Telescope observations that the predictions of this hypothesis could be observationally tested for our own Galaxy, and the nearby elliptical M87, on spatial scales comparable to the gravitational radius. At the same time it became possible to test whether alternatives such as naked singularities in general relativity, or similar objects in alternative theories of gravity, are excluded by the data. These and other observational developments renewed interest in non-Kerr spacetime metrics, also in the context of active galactic nuclei at cosmological distances. Recently, we have shown that accreting naked singularities in the Reissner-Nordström metric of general relativity tend to produce strong outflows. The geometry and origin of these winds is studied here, and their parameter dependence is investigated. To this end we performed numerical GR hydrodynamical simulations of accretion of electrically neutral matter in the Reissner-Nordström metric and discussed the results in the context of analytic predictions of fluid motion in this spacetime.
format Preprint
id arxiv_https___arxiv_org_abs_2510_10043
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Accretion onto Reissner-Nordström naked singularities
Krajewski, Tomasz
Kluźniak, Włodek
High Energy Astrophysical Phenomena
General Relativity and Quantum Cosmology
Nearly every galactic core contains a supermassive compact object, hypothesized to be a Kerr black hole. It was only with the advent of Event Horizon Telescope observations that the predictions of this hypothesis could be observationally tested for our own Galaxy, and the nearby elliptical M87, on spatial scales comparable to the gravitational radius. At the same time it became possible to test whether alternatives such as naked singularities in general relativity, or similar objects in alternative theories of gravity, are excluded by the data. These and other observational developments renewed interest in non-Kerr spacetime metrics, also in the context of active galactic nuclei at cosmological distances. Recently, we have shown that accreting naked singularities in the Reissner-Nordström metric of general relativity tend to produce strong outflows. The geometry and origin of these winds is studied here, and their parameter dependence is investigated. To this end we performed numerical GR hydrodynamical simulations of accretion of electrically neutral matter in the Reissner-Nordström metric and discussed the results in the context of analytic predictions of fluid motion in this spacetime.
title Accretion onto Reissner-Nordström naked singularities
topic High Energy Astrophysical Phenomena
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2510.10043