Electromagnetic tests of horizonless rotating black hole mimickers
arXiv:2005.01837 · doi:10.1103/PhysRevD.103.064071
Abstract
The interest in the implications that astrophysical observations have for the understanding of the structure of black holes has grown since the first detection of gravitational waves. Many arguments that are put forward in order to constraint alternative black hole models rely on substantial assumptions such as perfect spherical symmetry, which implies absence of rotation. However, given that astrophysical black holes will generally exhibit nonzero angular momentum, realistic constraints must take into account the effects of rotation. In this work we analyze the gravitational effect that rotation has on the emission from the surface of ultracompact objects, by studying how angular momentum affects the propagation of light rays. This allows us to evaluate the reliability of the constraints derived for supermassive black holes (more specifically, Sagittarius A* and M87*) assuming lack of rotation, as presented in [Astrophys. J. 701, 1357 (2009); Astrophys. J. 805, 179 (2015)]. We find that for rapidly spinning objects rotation can significantly affect the escaping probability of photon emitted from the surface of the object, with a significant increase at the equatorial regions and a decrease at the poles with respect to the non-rotating case. For not so rapidly spinning black hole candidates like Sagittarius A*, such modifications do not affect significantly the present constraints, which are nevertheless weaker than originally supposed due to the relativistic lensing here considered and additional phenomenological parameters that describe basic processes such as absorption. However, taking into account the angular dependence of the superficial emission of rapidly spinning black hole mimickers will be necessary for future studies of objects like e.g. M87*.
V2: 25 pages, 14 figures, 8 tables. Additional discussions included following suggestions by referees, no physics changes. This version accepted for publication. V1: 23 pages, 13 figures, 8 tables
References in corpus (11)
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- Advection-Dominated Accretion and the Black Hole Event Horizon
- Ergoregion instability of ultra-compact astrophysical objects
- On the ergoregion instability in rotating gravastars
- Where are all the gravastars? Limits upon the gravastar model from accreting black holes
- Physical observability of horizons
- The Event Horizon of M87
- New theoretical approaches to black holes
- Escape probability of a photon emitted near the black hole horizon
- Generalized no-hair theorems without horizons
- Black Hole Spin Evolution Affected by Magnetic Field Decay