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Strong and Weak Deflection of Light in the Equatorial Plane of a Kerr Black Hole

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arxiv 0908.0085 v1 pith:N5VHFULD submitted 2009-08-01 gr-qc

classification gr-qc
keywords blackholebendingdeflectionexpansionsimageslightstrong
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Analytical series expansions for the bending of light in the equatorial plane of a Kerr black hole are presented in both the strong and weak deflection regimes. It is critical that these are known in analytical form so further analysis can be done for predicting different properties of images formed in gravitational lensing. Starting with the exact bending angle in terms of the spin parameter, we apply a perturbative scheme for rewriting the bending angle as series expansions in terms of the impact parameter of the incident light ray. The asymmetry introduced by the black hole spin results in spin-dependent shifts in image positions. We apply our results for the case of a galactic supermassive black hole to predict angular shifts of relativistic images from the optic axis. This would not be possible without the perturbative expansions in the strong deflection regime, only in which relativistic images have a chance of being resolved by future telescopes.

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Cited by 1 Pith paper

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  1. Gravitational lensing in a plasma from worldlines

    hep-th 2024-12 conditional novelty 6.0 of 10

    The worldline formalism yields a closed-form NLO plasma-induced deflection angle for power-law electron density, matching previous results where they exist.

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