Localization of energy and momentum in an asymptotically Reissner-nordström non-singular black hole space-time geometry

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Abstract

The space-time geometry exterior to a new four-dimensional, spherically symmetric and charged black hole solution that, through a coupling of general relativity with a non-linear electrodynamics, is non-singular everywhere, for small r it behaves as a de Sitter metric, and asymptotically it behaves as the Reissner-Nordström metric, is considered in order to study energy-momentum localization. For the calculation of the energy and momentum distributions, the Einstein, Landau-Lifshitz, Weinberg and Møller energy-momentum complexes were applied. The results obtained show that in all prescriptions the energy depends on the mass M of the black hole, the charge q, two parameters a ∈ Z+ and γ ∈ R+, and on the radial coordinate r. The calculations performed in each prescription show that all the momenta vanish. Additionally, some limiting and particular cases for r and q are studied, and a possible connection with strong gravitational lensing and microlensing is attempted.

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Radinschi, I., Kumar Sahoo, P., Grammenos, T., Chattopadhyay, S., & Cazacu, M. M. (2020). Localization of energy and momentum in an asymptotically Reissner-nordström non-singular black hole space-time geometry. Universe, 6(5). https://doi.org/10.3390/universe6050069

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