Slowly rotating and the accelerating $\alpha'$-corrected black holes in four and higher dimensions
Abstract
We consider the low-energy effective action of string theory at order , including -corrections to the Einstein-Hilbert gravitational action and non-trivial dilaton coupling. By means of a convenient field redefinition, we manage to express the theory in a frame that enables us to solve its field equations analytically and perturbatively in for a static spherically symmetric ansatz in an arbitrary number of dimensions. The set of solutions we obtain is compatible with asymptotically flat geometries exhibiting a regular event horizon at which the dilaton is well-behaved. For the 4-dimensional case, we also derive the stationary black hole configuration at first order in and in the slowly rotating approximation. This yields string theory modifications to the Kerr geometry, including terms of the form , , and . In addition, we obtain the first correction to the C-metrics, which accommodates accelerating black holes. We work in the string frame and discuss the connection to the Einstein frame, for which rotating black holes have already been obtained in the literature.
Cite
@article{arxiv.2207.13214,
title = {Slowly rotating and the accelerating $\alpha'$-corrected black holes in four and higher dimensions},
author = {Felipe Agurto-Sepúlveda and Mariano Chernicoff and Gaston Giribet and Julio Oliva and Marcelo Oyarzo},
journal= {arXiv preprint arXiv:2207.13214},
year = {2023}
}
Comments
19 pages, no figures. v2 21 pages, rotating solution added and title modified, one author added. v3 26 pages, accelerating solution added and title accordingly modified. We have also included the explicit mapping to the Einstein frame that allows to relate our solutions with the ones appearing in previous literature. To appear in PRD