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Bounding Greybody and Deflection Angle of Improved Schwarzschild Black Hole
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We explore the deflection angle in the framework of improved Schwarzschild Black hole utilizing the most advance geometrical path adopted by Gibbon-Werner. To investigate deflection angle of the photon ray by weak gravitational lensing for this black hole, we derive the optical curvature and perform the application of Gauss-Bonnet theorem on the optical metric. Moreover, we study the impacts of the plasma medium in context of the weak gravitational lensing in relate to this black hole. Further, we also study the graphical analysis of the deflection angle in both the plasma and non-plasma mediums. Also, we find the rigorous bound base upon the greybody factor for improved Schwarzschild black hole. A while later, we contrast our conclusions about deflection angle with the deflection angles of Schwarzschild black hole within plasma and non-plasma mediums.
Title: Bounding Greybody and Deflection Angle of Improved Schwarzschild Black Hole
Description:
We explore the deflection angle in the framework of improved Schwarzschild Black hole utilizing the most advance geometrical path adopted by Gibbon-Werner.
To investigate deflection angle of the photon ray by weak gravitational lensing for this black hole, we derive the optical curvature and perform the application of Gauss-Bonnet theorem on the optical metric.
Moreover, we study the impacts of the plasma medium in context of the weak gravitational lensing in relate to this black hole.
Further, we also study the graphical analysis of the deflection angle in both the plasma and non-plasma mediums.
Also, we find the rigorous bound base upon the greybody factor for improved Schwarzschild black hole.
A while later, we contrast our conclusions about deflection angle with the deflection angles of Schwarzschild black hole within plasma and non-plasma mediums.
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