It was recently shown that a scalar field suitably coupled to the Gauss-Bonnet invariant G can undergo a spin-induced linear tachyonic instability near a Kerr black hole. This instability appears only once the dimensionless spin j is sufficiently large, that is, j≳0.5. A tachyonic instability is the hallmark of spontaneous scalarization. Focusing, for illustrative purposes, on a class of theories that do exhibit this instability, we show that stationary, rotating black hole solutions do indeed have scalar hair once the spin-induced instability threshold is exceeded, while black holes that lie below the threshold are described by the Kerr solution. Our results provide strong support for spin-induced black hole scalarization.
@article{arxiv.2009.03904,
title = {Spin-induced scalarized black holes},
author = {Carlos A. R. Herdeiro and Eugen Radu and Hector O. Silva and Thomas P. Sotiriou and Nicolás Yunes},
journal= {arXiv preprint arXiv:2009.03904},
year = {2021}
}
Comments
8 pages, 3 figures. v2 matches version published in PRL