Gravitational Lensing Effect on the Hawking Radiation of Dyonic Black Holes
arXiv:1405.5392 · doi:10.1142/S0219887814500741
Abstract
In this paper, we analyze the Hawking radiation (HR) of a non-asymptotically flat (NAF) dyonic black hole (dBH) in four-dimensional (4D) Einstein-Maxwell-Dilaton (EMD) gravity by using one of the semiclassical approaches which is the so-called Hamilton-Jacobi (HJ) method. We particularly motivate on the isotropic coordinate system (ICS) of the dBH in order to highlight the ambiguity to be appeared in the derivation of the Hawking temperature (T_{H}) via the HJ method. Besides, it will be shown that the ICS allows us to write the metric of the dBH in form of the Fermat metric, which renders possible of identification of the refractive index (n) of the dBH. It is unraveled that the value of n and therefore the gravitational lensing effect is decisive on the the tunneling rate of the HR. We also uncloak how one can resolve the discrepancy about the T_{H} of the dBH in spite of that lensing effect.
DOI has been added
References in corpus (2)
Cited by in corpus (6)
- Dark matter effect on the weak deflection angle by black holes at the center of Milky Way and M87 galaxies
- Tunneling of Vector Particles from Lorentzian Wormholes in 3+1 Dimensions
- Some Observable Physical Properties of the Higher Dimensional dS/AdS Black Holes in Einstein-Bumblebee Gravity Theory
- Gravitational lensing by traversable wormholes supported by three-form fields
- Optical properties of null geodesics emerging from dynamical systems
- Studies on Thin-shells and Thin-shell Wormholes