Electromagnetic field of a charge asymptotically approaching spherically symmetric black hole
Abstract
We consider a test charged particle falling onto a Schwarzschild black hole and evaluate its electromagnetic field. The Regge-Wheeler equation is solved analytically by approximating the potential barrier with Dirac delta function and rectangular barrier. We show that for asymptotically large time measured by a distant observer the electromagnetic field approaches the spherically symmetric electrostatic field exponentially fast. This implies that in the region accessible to a distant observer the initial state of separated charge and Schwarzschild black hole becomes asymptotically indistinguishable from the Reisnner-Nordstr\"om solution. Implications of this result for models with plasma accretion on black holes are discussed.7 a
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Cite
@article{arxiv.2305.18214,
title = {Electromagnetic field of a charge asymptotically approaching spherically symmetric black hole},
author = {Komarov S. O. and Gorbatsievich A. K. and Vereshchagin G.},
journal= {arXiv preprint arXiv:2305.18214},
year = {2023}
}
Comments
7 pages, 2 figures