Effect of the quintessential dark energy on weak deflection angle by Kerr-Newmann Black hole
arXiv:2007.16027 · doi:10.1016/j.aop.2020.168183
Abstract
In this work, we study the weak gravitational lensing in the background of Kerr-Newman black hole with quintessential dark energy. Initially, we compute the deflection angle of light by charged black hole with quintessential dark energy by utilizing the Gauss-Bnnet theorem. Firstly, we suppose the light rays on the equatorial plane in the axisymmetric spacetime. In doing so, we first find the corresponding optical metrics and then calculate the Gaussian optical curvature to utilize in Gauss-Bonnet theorem. Consequently, we calculate the deflection angle of light for rotating charged black hole with quintessence. Additionally, we also find the deflection angle of light for Kerr-Newman black hole with quintessential dark energy. In order to verify our results, we derive deflection angle by using null geodesic equations which reduces to the deflection angle of Kerr solution with the reduction of specific parameters. Furthermore, we analyze the graphical behavior of deflection angle w.r.t to impact parameter . Our graphical analysis retrieves various results regarding to the deflection angle by the Kerr-Newman black hole with quintessential dark energy.
13 pages
References in corpus (15)
- Dynamics of dark energy
- First M87 Event Horizon Telescope Results. I. The Shadow of the Supermassive Black Hole
- Applications of the Gauss-Bonnet theorem to gravitational lensing
- Shadow of a black hole surrounded by dark matter
- Shadow of five-dimensional rotating Myers-Perry black hole
- Gravitational Lensing by Rotating Wormholes
- Black hole shadow in a general rotating spacetime obtained through Newman-Janis algorithm
- The effect of the Brane-Dicke coupling parameter on weak gravitational lensing by wormholes and naked singularities
- Black hole mimicker hiding in the shadow: Optical properties of the -metric
- Weak gravitational lensing of regular black holes with cosmic strings using the Gauss-Bonnet theorem
- The Kerr spacetime: A brief introduction
- Kerr-Newman-AdS Black Hole In Quintessential Dark Energy
- Light deflection by charged wormholes in Einstein-Maxwell-dilaton theory
- Effect of Lorentz Symmetry Breaking on the Deflection of Light in a Cosmic String Spacetime
- Effect of the dilaton field and plasma medium on deflection angle by black holes in Einstein-Maxwell-dilaton-axion theory