Generalized accelerating Kerr-Newman-NUT-de Sitter black holes
arXiv:2509.16647
Abstract
We obtain rotating black hole solutions to the Einstein-Maxwell equations with the cosmological constant. There are eight parameters in the solutions. They are the physical mass , the electric charge , the specific angular momentum , the acceleration , the cosmological constant and other three parameters, and . We show that and are actually the well-known NUT charge and the rescaled parameter , respectively, for the Kerr-NUT spacetime. As for , it is a new parameter although it has the same physical meaning of in the weak field limit. In the case of static limit, describes a conical defect along the axis of revolution, which corresponds to a cosmic string of tension. Therefore, the solutions extend the accelerating Kerr-Newman-NUT-de Sitter spacetime.
8 pages