Weak Deflection Angle by Kalb–Ramond Traversable Wormhole in Plasma and Dark Matter Mediums

Author:

Javed Wajiha,Irshad Hafsa,Pantig Reggie C.ORCID,Övgün Ali

Abstract

This paper is devoted to computing the weak deflection angle for the Kalb–Ramond traversable wormhole solution in plasma and dark matter mediums by using the method of Gibbons and Werner. To acquire our results, we evaluate Gaussian optical curvature by utilizing the Gauss–Bonnet theorem in the weak field limits. We also investigate the graphical influence of the deflection angle α˜ with respect to the impact parameter σ and the minimal radius r0 in the plasma medium. Moreover, we derive the deflection angle by using a different method known as the Keeton and Petters method. We also examine that if we remove the effects of plasma and dark matter, the results become identical to that of the non-plasma case.

Publisher

MDPI AG

Subject

General Physics and Astronomy

Reference101 articles.

1. Charged vector particle tunneling from a pair of accelerating and rotating and 5D gauged super-gravity black holes;Eur. Phys. J. C,2017

2. The Particle Problem in the General Theory of Relativity;Phys. Rev.,1935

3. Weak gravitational lensing by stringy black holes;Eur. Phys. J. Plus,2020

4. Visser, M. (1996). Lorentzian Wormholes: From Einstein to Hawking, American Institute of Physics.

5. Geons;Phys. Rev.,1955

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