2018
DOI: 10.1103/physrevd.97.124016
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Weak lensing in a plasma medium and gravitational deflection of massive particles using the Gauss-Bonnet theorem. A unified treatment

Abstract: We apply the Gauss-Bonnet theorem to the study of light rays in a plasma medium in a static and spherically symmetric gravitational field and also to the study of timelike geodesics followed for test massive particles in a spacetime with the same symmetries. The possibility to using the theorem follows from a correspondence between timelike curves followed by light rays in a plasma medium and spatial geodesics in an associated Riemannian optical metric. A similar correspondence follows for massive particles. F… Show more

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Cited by 152 publications
(137 citation statements)
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“…where being n the refractive index of the medium given by Eqn. (1) and where the gravitational redshift has already been taken into account,…”
Section: Optical Metric For Stationary Axisymmetric Spacetimes Inmentioning
confidence: 99%
“…where being n the refractive index of the medium given by Eqn. (1) and where the gravitational redshift has already been taken into account,…”
Section: Optical Metric For Stationary Axisymmetric Spacetimes Inmentioning
confidence: 99%
“…In this section, we study the effect of plasma medium on the weak gravitational lensing by EMDA BH. The refractive index for the EMDA BH is given as [41]…”
Section: Weak Gravitational Lensing Of Emda Bh In Plasma Mediummentioning
confidence: 99%
“…By using the Gauss-bonnet theorem GBT, deflection angle of light on the foundation of magnetized BH and impact of non-linear electrodynamic has been found by Javed et al [52,53]. Recently, plasma medium deflects photons shown by Crisnejo and Gallo [54]. By investigating the weak gravitational lensing for hairy BH in the back burner of Einstein-Maxwell theory (EMT) with a non-minimally coupled dilaton and its non-trivial potential, in this connection by virtue of GBT deflection angle of light has been computed with plasma and excluding plasma medium by Javed et al [55].…”
Section: Introductionmentioning
confidence: 95%