Effect of power-law Maxwell field to the gravitational lensing
arXiv:1903.07098 · doi:10.1103/PhysRevD.99.084003
Abstract
In this paper, we extend the gravitational bending of light studies in Kottler metrics to comprise nonlinear electrodynamics within the framework of Einstein - power - Maxwell theory. We show that the closest approach distance and the gravitational bending of light are affected from the presence of charge for particular values of the power parameter , which is defined by means of energy conditions. It is shown that the bending angle of light is stronger in the case of a strong electric field, which is the case for .
12 pages 5 figures, final version published in Physical Review D
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Cited by in corpus (4)
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- Static dilatonic black hole with nonlinear Maxwell and Yang-Mills fields of power-law type
- Gravitational Lensing in a Model of Nonlinear Electrodynamics: The case for electrically and magnetically charged compact objects
- -dimensional Bertotti-Robinson solutions in gravity coupled with nonlinear electrodynamics