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Black holes and wormholes in f(R) gravity with a kinetic curvature scalar

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arxiv 2008.12143 v2 pith:467B2SGE submitted 2020-08-25 gr-qc

Black holes and wormholes in f(R) gravity with a kinetic curvature scalar

classification gr-qc
keywords solutionsframegravitymodelobtainedspecialasymptoticbehavior
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We study the chiral self-gravitating model (CSGM) of a special type in the spherically symmetric static spacetime in Einstein frame. Such CSGM is derived, by virtue of Weyl conformal transformation, from a gravity model in the Jordan frame corresponding to a modified $f(R)$ gravity with a kinetic scalar curvature. We investigate the model using harmonic coordinates and consider a special case of the scaling transformation from the Jordan frame. We find classes of solutions corresponding to a zero potential and we investigate horizons, centers and the asymptotic behavior of the obtained solutions. Other classes of solutions (for the potential not equal to zero) are found using a special relation (ansatz) between the metric components. Investigations of horizons, centers and asymptotic behavior of obtained solutions for this new case are performed as well. Comparative analysis with the solutions obtained earlier in literature is made.

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Cited by 1 Pith paper

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  1. A connection between Gravitational Scalar-Tensor theories and Generalized Hybrid theories

    gr-qc 2026-03 conditional novelty 6.0

    GST theories linear in □R are dynamically equivalent to generalized hybrid f(R,ℛ) models via a shared Einstein-frame bi-scalar representation that supplies an explicit reconstruction dictionary.