English

Evolution of Braneworld Kerr-Newman Naked Singularities

General Relativity and Quantum Cosmology 2022-05-17 v1

Abstract

We study evolution of the braneworld Kerr--Newman (K-N) naked singularities, namely their mass MM , spin aa, and tidal charge bb characterizing the role of the bulk space, due to matter in-falling from Keplerian accretion disk. We construct the evolution in two limiting cases applied to the tidal charge. In the first case we assume bb = const during the evolution, in the second one we assume that the dimensionless tidal charge βb/M2\beta \equiv b/M^2 = const. For positive values of the tidal charge the evolution is equivalent to the case of the standard K-N naked singularity under accretion of electrically neutral matter. We demonstrate that counter-rotating accretion always converts a K-N naked singularity into an extreme K-N black hole and that the corotating accretion leads to variety of outcomes. The conversion to an extreme K-N black hole is possible for naked singularity with dimensionless tidal charge β<0.25\beta < 0.25, and β(0.25,1)\beta \in (0.25, 1) with sufficiently low spin. In other cases the accretion ends in a transcendental state. For 0.25<β<10.25 < \beta < 1 this is a mining unstable K-N naked singularity enabling formally unlimited energy extraction from the naked singularity. In the case of β>1\beta > 1, the corotating accretion creates unlimited torodial structure of mater orbiting the naked singularity. Both non-standard outcomes of the corotating accretion imply a transcendence of such naked singularity due to nonlinear gravitational effects.

Keywords

Cite

@article{arxiv.2205.07558,
  title  = {Evolution of Braneworld Kerr-Newman Naked Singularities},
  author = {Martin Blaschke and Zdeněk Stuchlík and Sudipta Hensh},
  journal= {arXiv preprint arXiv:2205.07558},
  year   = {2022}
}

Comments

14 pages,14 figures