Spin-charge induced scalarization of Kerr-Newman black-hole spacetimes
Abstract
It has recently been demonstrated that Reissner-Nordstr\"om black holes in composed Einstein-Maxwell-scalar field theories can support static scalar field configurations with a non-minimal negative coupling to the Maxwell electromagnetic invariant of the charged spacetime. We here reveal the physically interesting fact that scalar field configurations with a non-minimal {\it positive} coupling to the spatially-dependent Maxwell electromagnetic invariant can also be supported in black-hole spacetimes. Intriguingly, it is explicitly proved that the positive-coupling black-hole spontaneous scalarization phenomenon is induced by a non-zero combination of {\it both} the spin and the electric charge of the central supporting black hole. Using analytical techniques we prove that the regime of existence of the positive-coupling spontaneous scalarization phenomenon of Kerr-Newman black holes with horizon radius and a non-zero electric charge (which, in principle, may be arbitrarily small) is determined by the {\it critical onset line} . In particular, spinning and charged Kerr-Newman black holes in the composed Einstein-Maxwell-scalar field theory are spontaneously scalarized by the positively coupled fields in the dimensionless charge regime if their dimensionless spin parameters lie above the critical onset line .
Keywords
Cite
@article{arxiv.2206.12074,
title = {Spin-charge induced scalarization of Kerr-Newman black-hole spacetimes},
author = {Shahar Hod},
journal= {arXiv preprint arXiv:2206.12074},
year = {2022}
}
Comments
7 pages. Submitted on 14 Jun 2022