arXiv · 2608.14919
New metric useful for studies of gravitational radiation from accelerating black holes of type D with any cosmological constant
Abstract
We apply a convenient parametrization of all Plebanski-Demianski black holes of algebraic type D with the Kerr rotation, NUT twist, acceleration, electric and magnetic charges, and any value of the cosmological constant $\Lambda$, recently found by Astorino. This represents a complete class of exact solutions to the Einstein-Maxwell-$\Lambda$ equations such that the (non-null) electromagnetic field is aligned with both the (geodesic, shear-free, double) principal null directions of the Weyl tensor. We derive a novel appropriate metric form and the corresponding canonical frames naturally adapted to both the de~Sitter-like ($\Lambda>0$) and the anti-de~Sitter-like ($\Lambda<0$) conformal infinity, and we demonstrate that these geometric objects are useful for investigation of radiation properties. In particular, using the Fernandez-Alvarez-Senovilla criterion, it confirms that the gravitational radiation is present if, and only if, these black holes are accelerating.
Explore related subjects
Keep this discovery
Jiri Podolsky. 2026-08-14. New metric useful for studies of gravitational radiation from accelerating black holes of type D with any cosmological constant. https://arxiv.org/abs/2608.14919
Cite the original work for its findings. Save a collection to share your selection of sources.