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Black bounces in conformal Killing gravity

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arxiv 2405.09702 v1 pith:OXOIO4FW submitted 2024-05-15 gr-qc astro-ph.HEhep-th

classification gr-qcastro-ph.HEhep-th
keywords blacksolutionsbouncenledscalarbouncesconformalconstant
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In this work, we analyse black bounce solutions in the recently proposed ``Conformal Killing gravity'' (CKG), by coupling the theory to nonlinear electrodynamics (NLED) and scalar fields. The original motivation of the theory was essentially to fulfil specific criteria that are absent in existing gravitational theories, namely, to obtain the cosmological constant as an integration constant, derive the energy-momentum conservation law as a consequence of the gravitational field equations, rather than assuming it, and not necessarily considering conformally flat metrics as vacuum solutions. In this work, we extend the static and spherically symmetric solutions obtained in the literature, and explore the possibility of black bounces in CKG, coupled to NLED and scalar fields. We find novel NLED Lagrangian densities and scalar potentials, and extend the class of black bounce solutions found in the literature. Furthermore, within black bounce geometries, we find generalizations of the Bardeen-type and Simpson-Visser geometries and explore the regularity conditions of the solutions.

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  1. Novel charged black hole solutions in conformal Killing gravity

    gr-qc 2025-02 conditional novelty 5.0 of 10

    Three new charged black hole spacetimes in conformal Killing gravity reproduce the Sgr A* shadow size after parameter tuning.

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