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Charged black-bounce spacetimes

Edgardo FranzinIFPU, Institute for Fundamental Physics of the Universe, via Beirut 2, 34014 Trieste, ItalyStefano LiberatiIFPU, Institute for Fundamental Physics of the Universe, via Beirut 2, 34014 Trieste, ItalyJacopo MazzaIFPU, Institute for Fundamental Physics of the Universe, via Beirut 2, 34014 Trieste, ItalyAlex SimpsonSchool of Mathematics and Statistics, Victoria University of Wellington, PO Box 600, Wellington 6140, New ZealandMatt VisserSchool of Mathematics and Statistics, Victoria University of Wellington, PO Box 600, Wellington 6140, New Zealand
2021en
ABI

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Abstract Given the recent development of rotating black-bounce-Kerr spacetimes, for both theoretical and observational purposes it becomes interesting to see whether it might be possible to construct black-bounce variants of the entire Kerr-Newman family. Specifically, herein we shall consider black-bounce-Reissner-Nordström and black-bounce-Kerr-Newman spacetimes as particularly simple and clean everywhere-regular black hole “mimickers” that deviate from the Kerr-Newman family in a precisely controlled and minimal manner, and smoothly interpolate between regular black holes and traversable wormholes. While observationally the electric charges on astrophysical black holes are likely to be extremely low, | Q |/ m ≪ 1, introducing any non-zero electric charge has a significant theoretical impact. In particular, we verify the existence of a Killing tensor (and associated Carter-like constant) but without the full Killing tower of principal tensor and Killing-Yano tensor, also we discuss how, assuming general relativity, the black-bounce-Kerr-Newman solution requires an interesting, non-trivial matter/energy content.

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